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Communication and Transmission

D‑Link extends 10 Gigabit Smart Managed Switch range with higher port count and 25GE support

The new DXS‑1210‑28S and DXS‑1210‑28T smart switches offer cost‑effective, intelligent options for enterprise aggregation and access, or SMB core network roles

D-Link, the multinational networking equipment manufacturer, has bolstered its DXS-1210 Series of 10 Gigabit Smart Managed Switches with two new high port count additions to the portfolio – the DXS-1210-28S and DXS-1210-28T. From access and aggregation in an enterprise network, to forming the core of a smaller business network, these new additions provide intuitive, flexible and cost-effective options for IT managers.

The DXS-1210-28T comes with 24 x 10GBASE-T and 4 x 25GE SFP28 ports. The 10GBASE-T ports provide an easy upgrade to 10 Gigabit connectivity using existing CAT6/7 cabling while the 25GE SFP28 ports offer high bandwidth connections to server farms or the network core. The DXS-1210-28S is equipped with 24 x SFP+ ports and 4 x 10GBASE-T ports, allowing long-distance connectivity using fibre transceivers as well as the flexibility of additional copper ports. Both switches offer high performance and low latency that are well suited to support virtualisation, cloud services, and server-to-server applications, making them the ideal choice to manage high-bandwidth demand.

The DXS-1210 Series switches offer a robust line-up of L2 features to improve the manageability and performance of a network. These include port mirroring, Spanning Tree Protocol (STP), and Link Aggregation Control Protocol (LACP). They also offer lite layer 3 functions such as wired speed inter-VLAN static routing to further enhance network efficiency by reducing the pressure on routers and backbone networks.

Each of these DXS-1210 series switches also offers a range of sophisticated but simple to deploy security features including D-Link’s innovative Safeguard Engine™ which works to protect against traffic flooding caused by malicious attacks. Additionally, the switches support 802.1X port-based and host-based authentication for network access control as well as ACL, ARP spoofing prevention and DHCP server screening to enhance network security and improve protection against threats.

D-Link’s Green technology capabilities help the switches minimise power and cooling demand, powering down unused ports, when possible, to save resources and reduce their carbon footprint

The DXS-1210 Series can be managed through the free D-Link Network Assistant (DNA) utility, with the ability for simultaneous configuration and maintenance of multiple switches. Alternatively, network management can be done through the multi-lingual web UI, a full command-line interface (CLI) through Telnet or console port, as well as D View 7 Network Management System.

D-Link Announces range of highly affordable Wi-Fi 6 Routers

The all-new DIR-X1560 and DIR-X1860 Wi-Fi 6 routers provide fast speeds, greater capacity and less network congestion in modern smart home networks

[LOCATION – DATE, 2020] – D-Link, a global leader in smart home and networking technology, has announced the availability of two all-new, cost-effective Wi-Fi 6 (802.11ax) routers – the AX1500 Wi-Fi 6 Router (DIR-X1560) and AX1800 Wi-Fi 6 Router (DIR-X1860).

Specifically designed with the modern smart home in mind, the DIR-X1560 and DIR-X1860 provide seamless and highly reliable combined Wi-Fi speeds of up to 1,500 Mbps and 1,774 Mbps respectively. Both routers provide a simple way to upgrade an existing home network to next-generation Wi-Fi 6 and are engineered to maintain a growing number of connected devices and smart home gadgets to run at any one time.

The DIR-X1560 and DIR-X1860 offer dual-band Wi-Fi with up to four simultaneous streams, which allows hassle-free 4K streaming, gaming or video calls. Both routers come fully equipped with a host of new technologies to enhance connectivity experience for users. These include 1024 QAM to boost throughput to all connected devices by up to 25% and 80 MHz for extended bandwidth. Both have built-in power amplifiers and include beamforming features to increase a Wi-Fi network’s reach and minimising blackspots. All together creating up to four times greater capacity and making connectivity 38% faster.

Both smart routers feature Multiple-User MIMO (MU-MIMO) technology and Orthogonal Frequency Division Multiple Access (OFDMA), a signature element of Wi-Fi 6. OFDMA provides exceptional capacity by splitting a channel into four sub-channels and supports faster bandwidth and connectivity distribution to devices, eliminating congestion and network queues.

What’s more, the DIR-X1560 and DIR-X1860 both support voice assistant capabilities, allowing users to enable or disable Wi-Fi access, check log-in credentials or reboot the system via voice-enabled smart speakers, such as Amazon Alexa or Google Assistant.

Easy to set up, users can access how-to guides to install their new router via D-Link’s dedicated app. Once installed, users are provided with many management tools and parental control features that allow users to tailor network access enabling safer internet connectivity.

Key features of D-Link’s DIR-X1560 and DIR-X1860 Wi-Fi 6 routers include:
– Wi-Fi 6 (802.11ax) technology provides faster speeds, greater capacity and less network congestion.
– Combined dual-band wireless speeds up to 1,500 Mbps/1,774 Mbps ensures optimal Wi-Fi experience to all devices, whether it’s video streaming, online gaming or web browsing.
– OFDMA and MU-MIMO technology communicate more data to more devices while simultaneously reducing latency.
– Profile-based parental control allows you to control when devices have access to the Internet.
– Better battery life of battery-powered connected devices with Target Wake Time (TWT) technology.
– Automatic firmware updates ensure that the AX1500 Wi-Fi 6 Router stays up-to-date with the latest features.
– SPEEDTEST powered™, allowing you to find out the true speed of your Internet, straight from the router.

Availability and Pricing
Contact your local D-Link office for more information
http://www.dlink.com

About D-Link
D-Link has designed, developed and manufactured award-winning networking, wireless, video surveillance, storage and home automation solutions for 30 years. As a global leader in connectivity, D-Link is transforming business networks and equipping businesses to operate more efficiently. It is also a key enabler of the smart home, making it easy and affordable for people around the world to monitor, automate and control their home from anywhere, anytime using their smartphone or tablet.

D-Link’s extensive ranges of innovative, high-performing and intuitive technologies are available for both businesses and consumers through its global network of channel and retail partners and service providers.

Dahua Provides ITS Solution for the Capital of Mongolia

Ulaanbaatar is the capital and the largest city of Mongolia, with a population over 1.3 million, which is almost half of the country’s total population. Over the past decade, the number of vehicles in Ulaanbaatar has risen by more than 300,000. As the political and cultural center of Mongolia, the increasing number of inhabitants and vehicles within the city has caused a series of social, environmental, and transportation problems. Dahua’s sophisticated ITS (Intelligent Transportation System) solution has integrated advanced software and hardware including sensors, information and data processing and physical electronics and communication technologies to assist the transportation department of Ulaanbaatar, in enhancing the safety and efficiency of its transportation system.

Challenges

In recent years, the government of Ulaanbaatar has prioritized the improvement of traffic management and has identified the need of a cost-effective solution towards speeding, traffic light violations and other road safety related issues, to create a more secure environment for citizens. Due to the high-latitude geography of the city, this project is particularly demanding on the monitoring equipment withstanding harsh environments.

Solution

Based on advanced intelligent algorithms, Dahua has provided the city with its cutting-edge ITS solution consisting of the ANPR (Automatic Number Plate Recognition) system for 28 main roads, the E-police system for 8 junctions, 2 mobile speed measurement systems as well as 15 high spot PTZ surveillance units. The project took only three months from the initial analysis of the client’s demands and solution design to, the final delivery, overcoming various tough issues along the way.

ANPR System

As there are no current systems for license plate recognition in Mongolia, the Dahua team worked in collaboration with a partner to customize a Mongolian license plate recognition algorithm. This was then integrated into the Dahua traffic cameras, achieving a reliable recognition rate, much to the satisfaction of the client. The Dahua traffic cameras installed at the significant main roads of the city, are able to function between a temperature of – 40 ℃ ~ + 80 ℃ and a 10%~90% humidity environment. The cameras will actively monitor and inspect each suspicious vehicle, and automatically capture their license plates in real time, sending out an automatic alert when blacklisted vehicles pass by.

E-police System

The monitoring equipment set up at the eight junctions, is able to help the Ulaanbaatar transportation authorities in making quick responses to traffic accidents that are caused by running red lights. When a violation occurs, the Dahua all-in-one capture camera takes a series of images of the vehicle’s license plate number, along with the status of the traffic signal and an aerial image of the scene as evidence. Afterwards, the DSS management and storage platform collects the data from each camera, and distributes it to operators for further processing.

Mobile Speed Measuring System

The mobile speed measuring system detects vehicles that surpass the speed limit in all weather conditions. The system features an all-in-one design, making it easy to use and install at different locations at a moment’s notice. This portability allows traffic police to move the system to different places whenever necessary. It consists of an 8MP CCD camera with amulti-target tracking radar, allowing for an accurate instant speed measurement of each passing vehicle and crystal-clear imaging. The IR flash lamp also ensures excellent imaging capabilities even during the dark of night.

To better serve the client, the Dahua team has provided the operators of the local transportation department, with relevant technical training and demonstrated to them, the installation and deployment of devices. Additionally, all three systems are unified on a single platform within the control center, further enabling the end user to a more efficient monitoring and management of road safety.

Benefits

Dahua’s ITS solution facilitates road safety and keeps the traffic flowing smoothly, raising the safety awareness of drivers, resulting in a more pleasant journey for drivers. Advanced technologies such as LPR and fuzzy search, actively reduces manpower demands on the police force, while increasing the efficiency of current enforcement. Furthermore, Dahua’s solution has assisted the government of Ulaanbaatar to finance a sustainable, growing, and well-maintained system of security and safety.

ComNet: Prevent against physical disruptions to security infrastructure

ComNet is an ACRE company that specializes in audio, video, data, and Ethernet communication products. One such area where the company’s Ethernet products come in useful is when combatting the threat of cybersecurity.
When it comes to cybersecurity, the threat of physical interruptions to a system by breaking into its infrastructure devices are rarely considered. However, through this method, it is possible to compromise and cause complete failure of a security system.
“Due to their nature, security and surveillance networks put network connections in both secure and unsecured locations. Vulnerable positioning provides ample opportunities for the would-be-attacker, so due care and attention must be paid to equipment protection,” explains Iain Deuchars, ComNet Regional Manager for the UK and Ireland.
For instance, the security threat to a network at this level results from a third-party physically connecting to the switch, or by removing an edge device from the system and attaching unauthorized equipment in its place. The connection could be to an optical port, but that would require the third-party to have the correct optical interface. So, for opportunistic reasons, it tends to be a connection via an electrical interface. Electrical Ethernet ports are based around an industry standard, so connecting to these is relatively simple. As every laptop today has such a connection, the probable weapon of attack is readily available.
Ethernet switches are available in managed or unmanaged forms, where the managed platform has many more features and allows the user to configure and remotely monitor the device. The unmanaged unit has no such facilities; it merely does the primary job based on its shipped configuration. “Media converters tend to be in an unmanaged format only. Where security is concerned, managed units offer several facilities to prevent unauthorized entry to the network. In contrast, unmanaged forms do not,” states Deuchars. “Therefore, managed Ethernet switches should be used throughout your network.”
Those who ignore the basics of network security and opt instead for cheaper, unmanaged devices, are exposing their networks to the risk of hackers. Hackers who can very quickly turn a sophisticated security network to their own advantage. And with the safety and protection of critical infrastructure, data and communications at stake, are you prepared to take that risk?

33rd ASEAN Summit ensures clear dialogue between world leaders with simultaneous interpretation from Bosch

As one of the most important events organized by the Association of Southeast Asian Nations, the 33rd ASEAN Summit and Related Summits brought world leaders together in Singapore to discuss economic and political issues in the region. Chaired by Singapore’s Prime Minister Lee Hsien Loong, the five-day summit at Suntec Convention Centre featured representatives from China, India, Japan, Republic of Korea, Canada, Australia, the Philippines and the United States, among others. Dignitaries in attendance included Chinese Premier Li Keqiang, U.S. Vice President Mike Pence and Canadian Prime Minister Justin Trudeau.

With important issues on the agenda, simultaneous interpretation between twelve languages for all 1,300 attendants was a key to success during the five-day event. Making it happen proved challenging for several reasons: First, the multi-purpose convention center provided no permanent interpreter booths or wiring for interpretation hardware. Second, close to 20 meetings between world leaders took place in separate meeting rooms, with each room and meeting requiring its own interpretation set-up. And third, the temporary interpreting solution needed to be ready within only three days leading up to the summit.

Congress Rental Singapore – a member of the Congress Rental Network and official conference partner of Bosch Building Technologies – designed and installed the temporary setup for the ASEAN Summit using a combination of wired DICENTIS, DICENTIS Wireless and DCN solutions from Bosch. Responding to the requirements for each of the four different meeting rooms, the experts deployed a total of 31 DICENTIS Discussion devices with touchscreen, 36 DICENTIS Wireless discussion devices with touchscreen and 33 DCN Conference devices with language selector. For the language interpreters provided by the government institution, 56 DCN Interpreter desks offered a familiar technology platform.

This set-up allowed Congress Rental technicians to equip each meeting between world leaders as the situation required. For instance, higher-level meetings held in the two plenary meeting rooms on level four of the venue could be supported either by DICENTIS Discussion devices or DICENTIS Wireless discussion devices, depending on the conference day and how much transition time was available to change the set-up for the next meeting. For the fastest build-up and break-down, the best choice proved to be DICENTIS Wireless devices paired with INTEGRUS Pocket receivers and headphones pre-set to the listener’s preferred language.

Several of the meetings during the five-day event ran at the same time, so Congress Rental decided to centralize its simultaneous interpretation capabilities. In a central location, 28 temporary booths were set up, each equipped with two DCN Interpreter desks. From there, interpreters delivered live interpretation to delegates in the plenary meeting rooms and summit attendees in the listening room on level 3. More than 1,300 INTEGRUS Pocket receivers were available in the listening room, where attendees could follow proceedings in any of the 12 languages used at the event. At the same time, automatic camera control tracked the interactions between world leaders in the plenary meeting rooms, which attendees could watch live on the installed TV screens on level 3.

Throughout the five-day ASEAN Summit, Congress Rental Singapore kept a number of technicians on-site to ensure system performance and hand-over of conference devices between participants several times per day. Via the user control software on the backend, the digital system from Bosch provided Congress Rental Singapore with valuable data on microphone usage and interpreter performance, plus a chance to address potential issues in real time, which was highly valued by the summit managers: “I have continually received nothing less than complete admiration and the highest appreciation for the way simultaneous interpretation services were managed, and for the performance and quality of the attending Congress Rental staff”, said Chris Jackson, ASEAN, Australia Special Taskforce.

Overall, the combination of hands-on support and flexible technology platform proved a success: The over 1,300 participants of the 33rd ASEAN Summit and Related Summits enjoyed a productive event accompanied by seamless interpretation in twelve languages. In addition, the solution was dismantled and ready to be redeployed at the next high-level conference only a few hours later.

Latest surveillance technologies keep seaports more secure

With two huge targets — people and assets, seaports are a likely mark for attacks. Video surveillance plays an important part of ensuring the safety and security of seaports, and new and improved technologies are helping do so.
Izvor: a&s International
E-mail: redakcija@asadria.com

Seaports are a gateway for people and goods to enter different cities and countries around the world. This, however, also makes them vulnerable to a number of threats. A robust video surveillance system, then, becomes a critical component of the overall safety and security solution at a seaport.

The requirements for a video surveillance solution at seaports have evolved over time. Not only does it serve to provide security and surveillance functions, but also for worker safety and operations. These evolving needs are the result of a growing risk landscape and growing threat of terrorist attacks.

“As families enter and exit cruise ships, large crowds are often shuffling around, creating a critical component of necessary protection for these spaces. For ships carrying goods and materials, the possibility exists that the inventory may present something suspicious that poses a potential threat, requiring proper scanning and searching techniques,” said Jumbi Edulbehram, Regional President of Americas at Oncam.

Video surveillance provides a valuable solution to safeguard these aspects, allowing officials to observe behavior in real time and quickly identify a risk or vulnerability.

Major Challenges
Seaports have many critical surveillance needs such as safeguarding against unlawful entry and terrorist threats, but they must also deal with day-to-day theft and damage issues. All this becomes increasingly difficult to deal with due to the large physical area that encompasses a port’s security responsibility and the fact that ports typically never close, having activity at all hours of the day and night. As a result, ports also encounter issues deciding how to effectively and economically protect a very large area. Something else to consider is that trade activity increases every year, resulting in more traffic and more assets the port must monitor and protect.

When it comes to deploying a video surveillance solution, major challenges at a seaport include the environment being very corrosive (salt water), harsh weather (fog and humidity) and the expansive layout. One way to combat such conditions is by taking advantage of surveillance cameras certified to operate despite constant sunlight, steady rainfall or high winds. Facility lighting and an ever-changing landscape of moving containers stacked to differing heights also pose a challenge for seaport security. “Stacking containers provide a real challenge for video coverage and ability to effectively illuminate areas and corridors between the stacks,” said Mark Brown, Director of Research and Development for Security at FLIR Systems. Another challenge is that ports are always full of activity.

“Although there are restricted areas that can be monitored using traditional surveillance technology, a port must also monitor and police areas that are open to the public and experience high volumes of foot and vehicle traffic,” said Eric Olson, VP of Marketing for PureTech Systems. “Ports must be able to quickly obtain usable surveillance data in the case of an event, and use advanced technologies to help them prevent these events from occurring.”

Better Analytics Mean Better Awareness
Among the many improvements in surveillance technology, several companies specifically pointed to artificial intelligence (AI) and improve- ments in video analytics as being key developments in improved seaport surveillance.

“The continued development of artificial intelligence algorithms, especially for video surveillance, will allow ports to more effectively monitor ‘soft events,’ whereby the event does not entail an intrusion, but rather a set of suspicious actions that may indicate threat, vandalism or other form of security breach,” Olson said. “The advancement of more intelligent video forensic algorithms, to provide quicker and more specific searches across video and other security sensors, will also be a great help to ports to speed up the investigation process and provide more accurate search results.”

Edulbehram explained that AI, machine learning and video analytics are combining to create one of the most beneficial aspects of video surveillance systems: proactivity. “These technologies allow the system to pick up on unusual or suspicious activity before an incident occurs, which is crucial for seaport security. Machine learning and AI probably have some of the most promising advancements for transportation, namely airports and seaports because they make existing applications such as facial recognition much more accurate,” Edulbehram said. “They also help identify anomalies which can indicate a security threat in environments in which traditional analytics fall short due to the complexity of the scenes. Being able to detect and mitigate a threat in advance can save countless lives and property in an environment where so many important pieces are gathered.”

Brown believes developments in deep learning/CNN (convolutional neural networks) and their contributions to improved video analytic performance hold a lot of promise for the seaport environment. Brown identified several types of video analytic functions that are improving seaport surveillance security, such as license plate recognition (LPR) and optical character recognition for the control of vehicular and container traffic entering, leaving and within the facility; object tracking analytics for forklift, truck, crane and container movements; and facial recognition and people counting analytics are applicable for many seaport facilities servicing cruise ships.

Improvements in Camera Technology
Improvements in panoramic and thermal camera technologies are allowing seaports to see beyond what traditional video surveillance cameras have been able to offer.

“Current technology gaps that still need to be addressed to help ports in their security efforts include the ability to monitor very large areas economi- cally in both day and night conditions. For example, thermal cameras work very well for night time detection at a distance, but they do not allow for detailed identification. While video surveillance cameras do a good job at this, they require a large amount of illumination to do so during night time surveillance. Radars scan over large areas, but do not provide a visual confirmation,” Olson explained. “The key is combining these solutions in an economically and intelligent manner to provide ports with this wide range of coverage — day and night.”

Edulbehram explained how the development of panoramic surveillance technology has allowed seaport security officials to mitigate the issue of comprehensive coverage by providing the ability to obtain a complete view of the scene with no blind spots. “Investing in panoramic 360-degree cameras in seaports and incorpo- rating them as part of an overall video surveillance plan can help ensure total situational awareness,” he said.

Developments in thermal imaging with increased resolution have allowed thermal cameras to be utilized for analytics that are more reliable and not affected by challenging lighting conditions, according to Brown. “Multi-sensor cameras with visible and thermal cameras in the same housing allow for the analytics to run on the thermal payload and the visible to be utilized for identification of the intruder.”

In terms of radar, Brown noted that in combination with video surveillance for target identification, radar technologies are very effective for detection. In addition, it can be used to automatically slew cameras to detected radar targets and provide a very effective solution for covering large open areas on the waterside or land perimeters.

Developments in Drone Surveillance
Drone technologies from both the threat and security tool perspective can have a large impact in the seaport environment. Drones enabled with AI algorithms and traditional video tracking analytics also provide an exciting new opportunity for seaports. “Seaports have a significant area to cover, and the ability to automatically dispatch a drone to the location of event, to not only provide video verification, but provide a means of deterrence through the drone’s presence, can allow ports to not only react faster to events, but also manage ay-to-day operation costs,” Olson said.

“The recent ability to combine geospatial alarm and tracking with video equipped drones will now allow ports to perform guard tours and react to events using automatically deployed and controlled drones,” Olson added. “This technology will allow ports to not only react faster to events, but also manage day to day operation costs of security guards, security vehicles, training, fuel, etc.”

Despite this, drone detection and defense is still an emerging market with many challenges both from the detection side and ability to proactively stop drone threats, according to Brown. “Current drones have the capabilities to be utilized from the surveillance perspective for patrols and automated response to incidents, however there is still a gap in automated charging and enclosure solutions. Legislation around entirely autonomous control is also evolving and is a limiting factor in deploying fully automated systems,” he added.

Future Advances for Safer Seaports
The recent technological advances in camera technology and incorporation of AI for better analytics are all providing seaports with improved surveillance solutions. In the future, as AI in video surveillance and developments in drone use for surveillance all get even better, seaport operators will be able to enjoy more proactive solutions for even more effective and efficient monitoring.

How the Cloud and Edge Computing Can Help Seaports

Edge computing and cloud management could play key roles in seaport surveillance, according to Steve Hu, Product Manager of Merit LILIN. This is due to their maintainability and construction cost.

Seaports are vast and require a large number of cameras to adequately monitor the entire premises. This is where edge computing and the cloud could help seaport security operators manage systems more efficiently. “Without edge computing, a great burden will be imposed on the central management system. Also, due to the huge size of the areas needed to be covered, cameras are usually installed in places that are difficult to reach. Cloud management could make maintenance much easier and reduce relevant costs,” Hu said.

In the past, edge computing and cloud management were limited by poor computing performance and limited network connection capability. However, these two issues are now more stable and reliable, making it possible to upgrade and operate surveillance systems in a more efficient way.

“In terms of cloud management, IPv6 was the key to implement a firewall-less or NAT-less remote-control system. But now LILIN has developed a remote management system — DeviceHub,” Hu explained. “No more complicated network settings should be made, just plug and play. That can be seen as an important milestone in breaking the limits of existing network conditions.”

How PSIM Makes Monitoring Seaports More Effective, Efficient

To properly surveil seaports, many disparate systems have been used over time. Erez Goldstein, Director of Global Marketing at Qognify, explains how using a PSIM to integrate these systems can create a more effective, efficient system.

Seaports are both sensitive in terms of their operations and unique in terms of their structure — its open environment to the sea makes it hard to close by usual means, as well as the high volumes of employee and visitor traffic. As such they have invested heavily over time in safety and security systems including: video surveillance, video analytics, intruder and hold up alert systems, access control, sonar, radar, automatic identifi- cation system, and GPS, as well as the increasing use of drones, according to Goldstein.

“With so many disparate systems in operation, the big challenge (and opportunity) is to integrate them in a way that delivers a common operating picture that security teams can use to proactively monitor, manage and maintain the security of the port, its people, vessels and cargo,” he added. “However, seaports have also realized that while a single centralized platform can help to significantly reduce exposure to risks and improve incident management, it can also make them more operationally efficient.”

Take for example, Naftoport — Poland’s only oil transshipment port, where it is estimated that just one day of not operating would result in a loss as high as US$200,000.

“The seaport is using our PSIM solution, Qognify Situator, to integrate its diverse array of security systems and sensors. This includes 21 channels of our intrusion detection video analytics technology for both analog and infrared,” he added.

In doing so, Naftoport has been able to automate 40 day-to-day security procedures and implement a response plan that helps its security teams to pre-plan, coordinate and manage the response to emergency situations in real-time, as well as effectively manage routine security operations.

Choosing the Right Vendor for Seaport Needs

Choosing the right vendor can be just as important as choosing the right equipment. The following are things to consider when choosing a vendor for seaport needs.

One thing to consider is the ability to propose solutions that provide a high level of security required for critical facilities, said Mark Brown, Director of Research and Development for Security at FLIR Systems. Not only that, but the vendor should also be able to aid in operations allowing the port to operate efficiently and effectively. “This implies an understanding of operations and an integration capability with additional systems,” he added.

Integration is absolutely a key priority for seaport security operators, according to Jumbi Edulbehram, Regional President of Americas at Oncam, as these installations often require numerous cameras and additional security equipment to ensure a comprehensively safe facility.

“Integration is also a factor when it comes to leveraging existing infrastructure; many seaports may already possess security technology and are looking to augment their system by incorporating the newest solutions. In order for these integrations to work smoothly, seaport security operators are looking for vendors that implement an open-platform design, enabling seamless collaboration between technologies and systems,” Edulbehram explained.

Eric Olson, VP of Marketing for PureTech Systems pointed out that the unique environment of a traditional port — large physical areas with high activity — also makes it very important that they chose a solution provider, not just a product supplier. “No one sensor can provide a port the most effective means of surveillance, and as technology advances, ports need to have their solution provider be agile in reacting to their needs.”

D-Link launches cloud solution for centralised and remote network management

D-Link, the multinational networking manufacturer, has announced the availability of its new cloud-based network management solution – Nuclias – enabling managed service providers and business owners to remotely configure and monitor their network infrastructures from anywhere, at any time.

Nuclias provides managed service providers and business owners complete control of their network from anywhere, at any time

Nuclias is a cloud-based management tool that eliminates the need for a local controller – reducing costs and complexity while streamlining network infrastructure. It also offers zero-touch provisioning for ease of deployment and scalable architecture to support an unlimited number of devices in a network. It provides users with the autonomy to manage wireless access points, capture and analyse insights into every connected device, and comes with an enhanced design and functionality.

Nuclias’ multi-tenant architecture allows deployment across multiple sites and organisations, and its advanced traffic report and data analysis tools provide business owners and IT professionals with real-time insights to enable effective management and planning.

Additional features include a secure role-based administration system, auditable change logs, authentication via captive portal, 802.1x, RADIUS server. It also supports Facebook and Google login for guest Wi-Fi access, and automated network monitoring.

Initially, D-Link will offer DBA-1210P AP, a high-performance 802.11ac Wave 2 access points with PoE support that allows for a more flexible installation where traditional power outlets may not be available. D-Link will continue to expand the range with indoor and outdoor access points as well as introduce high-performance Gigabit smart-managed switches with optional PoE and fibre connectivity to the Nuclias family of products.

Kevin Wen, President at D-Link Europe, commented: “At D-Link, we believe that cloud- managed networking is the answer to many of the challenges that MSPs face when servicing multiple local businesses, and the IT teams of mid-sized companies. Nuclias delivers into that sweet spot between the excess features laden high-end and high effort, and low value “budget” solutions currently available. We’re delivering the visibility, ease of deployment, automation and security that smaller IT teams and MSPs need on tap to be able to do more with less, while future proofing their networks – all at a price point that delivers demonstrable ongoing value.”

The Nuclias DBA-1210P wireless access point supports the latest dual-band 802.11ac Wave 2 with multi-user MIMO support to maximise a business’s network efficiency. It can simultaneously communicate with multiple devices, over multiple wireless bands, allowing businesses to get things done faster.

DBA-1210P:
– 802.11ac Wave 2
– 2×2 Concurrent Dual Band (AC1300)
– MU-MIMO
– Gigabit Ethernet
– 802.3af PoE

D-Link has been creating complete end-to-end networking solutions and state-of-the-art solutions to benefit businesses for more than 30 years. This includes switches, wireless devices, network security, IP surveillance, and storage and management solutions delivering best-in-class performance.

Finding the ideal framework for smart city data sharing

Smart cities have been made possible because of the Internet of Things. This has resulted in an abundance of data, most of which goes unused. Implementing a strong data sharing framework for smart cities to share data between various entities (e.g., government agencies, businesses, residents, etc.) will allow cities to become smarter, safer and more efficient.
Izvor: a&s International
E-mail: redakcija@asadria.com

When it comes to city surveillance, data sharing has become an important aspect of ensuring that all relevant parties are provided with the necessary information. Privacy concerns and government regulations, however, can pose obstacles.

By working with regulations and ensuring accountability, smart cities could implement a data sharing framework that benefits residents, businesses and the city as a whole.

The “Ideal” Framework
In smart cities, the ideal data sharing framework for video surveillance is built to serve both the smart city ecosystem and its stakeholders. These stakeholders range from the various government agencies and the entities operating within to the businesses, communities and residents of the city. The framework should allow each stakeholder to remain in command and control of their group’s data. At the same time, the framework needs to connect the various disparate systems that span these stakeholders.

“In a smart city a data sharing framework must have built-in, secure and traceable permissions that allow the owner(s) to share different silos of data, based on the agency or person accessing that data. Access to all shared data must be traceable for audit, with full transparency to all parties that ‘touched’ the data, when, and under what authority,” said Giovanni Gaccione, Justice and Public Safety Practice Lead at Genetec.

It is important that every municipal entity has a policy across all departments with input and guidance from all departments (e.g., fire, traffic, police, water, etc.), advised Stuart Rawling, Director of Segment Marketing at Pelco by Schneider Electric. “These departments must have an aligned understanding of data sharing and legal implications both internally and externally. Best practices should start with a white list of data that’s acceptable to share (such as basic physical appearance of crime suspects) rather than a black list of data that’s unacceptable (such as a Social Security number). This way the default is to not share or leak data that might be subjectively deemed not sensitive, but later could prove to be just that,” he said.

Ron Grinfeld, Global Marketing Business Development for Enterprise Security at FLIR Systems, suggested an API-centric design that allows data integration not only with newly implemented digital/data-driven systems, but also with legacy systems. Furthermore, an ideal framework must also support large scale, high bandwidth, sensor-generated data streams, and allow both public and private data sharing. “The framework should be scalable beyond the traditional city-level users and allow support for new classes of value creators and stakeholders,” he added.

Intelligent security devices, according to Fan Yang, Vertical Solutions Manager at Hikvision Digital Technology, play an important role in smart cities in capturing key targets and information. These devices send the data to the backend to be analyzed and are stored in a video structured data pool. “This valuable data will be converged on-demand to different application systems of a smart city, such as city traffic, public security, city management, environmental governance, etc.”

In terms of video surveillance, since video is converted to data and then further fused with algorithms, which are then applied in different businesses, Yang pointed out that this data could eventually help with intelligent operations, management and service delivery. “Therefore, an indispensable component of an ideal framework should include AI-powered intelligent devices to capture information, and a center for data analysis and storage, and an open application system for data sharing,” he added.

Challenges in Finding the “Ideal”
Regulations at the federal, state and local levels can all pose challenges to implementing a data sharing framework – this includes the public concern for privacy. However, city surveillance by itself has few challenges when it comes to data sharing, as long as certain privacy and data protection protocols are observed, and the data was captured in public locations, according to Gaccione. This is because most, if not all, of what is recorded in cities are of public places.

“The privacy and regulations come in when one fuses that video data with PID (personally identifiable data), which elevates that video from publicly generic to a record about someone or something. Sharing video surveillance before PID is added allows for easier distribution and collaboration,” Gaccione added.

The GDPR (General Data Protection Regulation) generated a lot of press earlier this year regarding the way it is changing the landscape of data privacy and equality across Europe. Yet, the regulations contained within the regulations are actually not entirely new.

“Many countries in the European Union and around the world have had data protection and individual privacy regulations in place for decades. However, sometimes such regulations were effectively unenforceable across international boundaries — the GDPR has highlighted and cemented consequences for non-compliance across international boundaries. This has forced a global change in behavior even though the regulations only apply to citizens of the European Union,” explained Rawling. “One component of GDPR is referred to as ‘the right to be forgotten,’ which is essentially an individual’s right to request data about them be removed from applicable databases. To comply with this in a city surveillance environment, there needs to be policies in place to respond and research any requests and form a response based on the organization’s policy,” he continued.

The risks associated with the collection, sharing and misuse of data is also a major challenge – this includes legal risks as well as cybersecurity risks and other related breaches that could lead to data loss and data theft. “Additionally, competitive risks are a challenge, where competitive assets and insights could reside within the shared data and potentially fall into the wrong hands,” Grinfeld said.

To overcome these challenges, Grinfeld recommends that the data sharing framework be built on top of an architecture that can fulfill the objectives of the ideal framework, addressing the needs for data control, sharing and cyber hardening. Additionally, he added that it is also critical to define best practices and common use cases for data sharing, adopt proper policies (and create new policies as needed), and develop action plans for data sharing implementations and collaborations between the various entities. “This will ensure that the essential areas are properly addressed while creating efficient execution cycles to bring the framework into reality,” he said.

Benefits and the Future
One of the benefits of a data sharing framework would be improved situational awareness of real-time security and public safety operations, Grinfeld said. “In other words, using data consolidations to gain a better understanding of what is happening in real time, allowing for improved decision making and higher efficiency in handling security and public safety events.”

In the future, Grinfeld sees big data utilizations becoming a trend. Such utilizations would involve smart processing of consolidated data that could help detect and analyzevarious patterns, anomalies, trends and behaviors with direct impact on security and public safety objectives. “Various benefits can arise from such utilizations, starting from the ability to identify problematic use cases, moving on to increase operational efficiencies of government and municipal agencies operating across the city. Ultimately, cities would like the ability to predict the occurrence of security events prior to these events taking place, allowing to prevent them entirely in some cases and in other cases, achieve better outcomes. This is the future we are all working toward.”

While the idea of “pooling or warehousing” of data is what many data sharing frameworks today revolve around, Gaccione believes that this goal is too much of a stretch for most organizations at this time. However, it could be part of our future. “Do I believe that someday we will have a ‘data warehouse’ or ‘lake’ per city? Sure, I do hope that, but the reality is that each stakeholder holds information differently. This has less to do about the technology and more about the use case,” he said.

For city surveillance, Yang believes the continued advancements and development of AI technology, big data, and cloud computing will make data collection more precise and efficient in the future. “Effective data collecting will enable faster updates, which can be shared to various areas of smart city. Furthermore, it will also allow the whole system to self-adapt and -adjust in a more timely manner.”

Frameworks for the Future
Going forward, data sharing will be a huge part of future smart cities and city surveillance, and learning to properly harness its power will make all the difference. While there are limitations as to how much data is being shared and with whom it can be shared, with the proper framework the possibilities are endless.

A Closer Look at Data Sharing and City Surveillance

Adlan Hussain, VP of Marketing at CNL Software, talked about some of the necessary components of an “ideal” framework for video surveillance data sharing and how it can have a positive impact on city surveillance.

The future of video surveillance within smart cities will be built around partnerships and memorandums of understanding between a number of stakeholders inside the city, according to Hussain. “These framework initiatives will require a platform to allow multi-system integration, regardless of manufacturer system. They will also allow the phased integration of complementary technologies such LPR, face detection and video analytics.”

Hussain explained how the following are necessary components to an “ideal” data sharing framework for city surveillance and how they will benefit a smart city.

• Consolidation of video: Safe city programs are rolled out in phases, with one of the first being technology integration within a major entity within a city — law enforcement usually performs this function. Their driver is to connect a number of their own disparate video systems. For example, over the years, the City of Atlanta, Georgia, has invested in a number of surveillance systems to provide law enforcement and other public safety professionals with visual intelligence, well before first responders arrive on scene.
• Aggregating the data: Immediate access to a vast number of “eyes on the ground” quickly becomes an essential part of their control room function. This then expands to bring in other technologies to support intelligence led policing, where information is key to the proactive use of surveillance.
• Collaboration: One of the most cost-effective methods to increase the amount and quality of intelligence available to government agencies is to deploy a centralized camera integration center. This model helps to reduce the cost of obtaining video for all agencies involved.
• Public-private partnerships (PPP): Hussain noted that CNL is seeing its customers move toward PPPs.
• Predictive policing: The ability to apply analytics to historic event-based data, enabling the better prediction of incidents, and improved use of resources to respond to these incidents.

How Data Sharing Could Make Safer, Smarter Cities

We all know that data sharing can make cities safer and smarter, but how? Giovanni Gaccione, Justice and Public Safety Practice Lead at Genetec, provided examples of where we are today, and where data sharing could get us in the future.

Through the examples below, Gaccione explores how data sharing could help make responding to an accident more efficient, and ultimately make a city safer.

Today when a hit-and-run incident occurs 911 gets a call from someone involved or who saw the incident, he explained. From there, police are dispatched for the response and report. Afterwards, police will have access to the cameras in the area and can pull that video for review and evidence. From there the police will start to piece together, as well as investigate, the incident.

In the future, say there is a shared Department of Transportation (DOT) and police system. When 911 gets a call from someone involved or who saw the hit-and-run incident, the operator’s system automatically pulls video from around the time of the incident. “With the DOT sharing access to their bus and train system, we can also see other video assets around the incident. The bus that was near the scene with cameras on its exterior are automatically pulled into the operator’s screen. Now with that video from the bus, the operator or police can now see more details about the hit and run, as well as possibly license plate and exit location. The system can then start pulling video from public-private partnership cameras as well as cameras from bus stops and intersections. This same scene now provides an entire movie of the incident as well as extra intel about the suspects.”

That same camera data can be shared with many other agencies and not just the agency that installed the camera, he added. “This means a camera at an intersection can be used by police for investigation; it can be used by the DOT for traffic analysis; it can be used by sanitation for prioritization of snow removal or post parade cleanups; it can be used by school boards to help with high student traffic flow analysis; as well as many other benefits. These same video assets with proper framework can now allow future cities to benefit the city at many levels. In summary, the point is that a video or data asset alone will no longer be a ‘police asset’ or ‘DOT asset,’ but I see that all these assets in the future will be ‘city assets,’ contributing to both a safer and smarter city.”

Smart Technology: What to know when choosing a LPWAN technology

More and more, in projects such as smart city or smart parking, users are faced with the need to install low-power devices that transmit small amounts of data over long distances. Rather than 3G/4G that is not optimized for this purpose, the low-power wide area network (LPWAN) technology stands as an ideal option. Currently there are different LPWAN technologies in the market, and the user should select a technology based on their demands and needs.

Izvor: a&s International

E-mail: redakcija@asadria.com

LPWAN has gained popularity in recent years, and that trend is expected to continue. In a research note, ABI Research estimated that 4 billion IoT devices are expected to rely on LPWANs by 2025, with the potential to generate a total value of more than US$2 billion.

For low-power devices that transmit small data over long distances, LPWAN provides an option that works more effectively than other wireless technologies. “Many potential ’connected things’ are located in remote or hard-to-reach areas at long distances from the next cellular base station. When there is coverage, it is often poor and requires the device transmitter to operate at high power, draining the battery,” said Steve Dunn, CEO of LEAPIN Digital Keys. “Additionally, cellular networks are not optimized for applications that only transmit small amounts of infrequent data. Further, the existing cellular standards don’t support power saving capabilities, which makes these standards unsuitable for inexpensive devices that require battery lives of several years.”

“Wireless transmissions from IoT end nodes often must communicate across long distances or need to penetrate barriers such as concrete or soil. LPWAN technologies are a good option for these conditions, enabling data that might otherwise be inaccessible or too costly to access to be connected to the cloud,” said Tom Pannell, Senior Marketing Director for IoT Products at Silicon Labs. “Ultimately, LPWAN connections help provide more insights into what is happening in the physical world — that is, via sensor nodes in our homes, offices, factories and urban infrastructure – thus contributing to real-time cloud-based analytics.”

TECHNOLOGIES AND APPLICATIONS

Currently many LPWAN technologies exist; these include NB-IoT, LoRa, Sigfox, HaLow, RPPM and Weightless. Each has unique features and characteristics that users should know before deciding which technology is most suitable for them.

NB-IoT

NB-IoT (NarrowBand IoT) is a LPWAN technology standardized by the 3rd Generation Partnership Project (3GPP), the same group that specified the LTE technology. As such NB-IoT operates in the same spectrum as LTE. Ecosystem partners include Huawei Technologies, Ericsson, Qualcomm Technologies, Deutsche Telekom, Vodafone Group, Intel and Nokia.

“Since NB-IoT operates in licensed spectrum, it is secure and reliable providing guaranteed quality of service,” Dunn said. “NB-IoT will eventually work virtually anywhere in mobile network operators’ existing infrastructure. It connects devices more simply and efficiently on already established mobile networks, and handles small amounts of fairly infrequent two-way data, securely and reliably.”

NB-IoT has various applications from smart parking to smart hotels. “We see NB-IoT as being most applicable for use in hotels. This solution is going to create value for hotels and guests alike as being able to add digital keys to hotel guest loyalty apps. This will streamline hotel operations and help them to capture data to improve the overall guest experience,” Dunn said. “We also believe there are many new applications for smart locks in areas that don’t require on-site power or Wi-Fi such as parcel delivery lockers, storage spaces, cabinet locks and even vehicles.”

LoRaWAN and Sigfox

LoRaWAN is another popular LPWAN technology. It is specified by the LoRa Alliance whose members include prestigious IT firms including Cisco, IBM and Renesas. According to the alliance, LoRaWAN transmits data at rates from 0.3 kbps to 50 kbps.

Sigfox meanwhile is a French company that created the Sigfox LPWAN technology, whose ecosystem partners include NXP, ON Semiconductor, Wisol and InnoComm. According to the company, Sigfox operates in the 200 kHz of the publicly available band to exchange radio messages over the air, with each message being 100 Hz wide and transferred at 100 or 600 bits per second, depending on the region.

According to Pannell, LoRa and Sigfox are best suited for city surveillance applications. “This involves disparate, spread-out end nodes, which are often located in hard-to-reach environments. A good example is a vibration sensor embedded in a bridge, providing data on the bridge’s physical condition and potential for stress-induced failure,” he said.

Wi-Fi HaLow

Wi-Fi HaLow is developed by the Wi-Fi Alliance. According to Randy Ryder, Marketing and Business Development Manager at Wi-Fi Alliance, the technology operates in the 900 MHz portion of the radio spectrum (as opposed to 2.4 GHz and 5 GHz for traditional Wi-Fi), transmits data at a low of 150 kilobits per second to 18 megabits per second, and has transmission range of up to 1 kilometer.

The setup of a HaLow network is basically the same as setting up Wi-Fi. A sensor integrated with the HaLow technology, for example in the form of a HaLow module, is connected to a Wi-Fi access point. Data is transmitted to the access point and is then propagated to the internet. “Some of the benefits of Wi-Fi HaLow, and why there is the expectation that it will grow and gain a lot of traction within IoT, is the fact that it leverages a tremendous installed base of Wi-Fi devices,” Ryder said. “Another key benefit is that Wi-Fi HaLow ensures interoperability with this existing installed base as well as future deployments.”

According to Ryder, Wi-Fi HaLow is suitable for both indoor and outdoor applications, especially in challenging RF environments where walls, concrete and other obstructions are present. “Because of Wi-Fi HaLow’s ability to operate in challenging environments, a great use case for the technology is an underground parking garage. The sensors in each parking spot can be connected via Wi-Fi HaLow to the main network, and people with smartphones are then able to see which parking places are open and which are occupied,” Ryder said.

RPMA

RPMA (Random Phase Multiple Access) is another LPWAN technology developed by Ingenu, offering data in the 2.4 GHz spectrum. “Ingenu’s RPMA technology is a low-power, wide-area network technology which is ideal for low data rate applications. It is currently deployed in the following markets: smart grid, asset tracking, agriculture, smart city, transportation/logistics and other industrial applications,” said Ted Myers, CTO of Ingenu. “Ingenu is constantly refining its RPMA technology, with the caveat that it will always be backwards compatible. This means that the network that is installed today will remain operational for years, even decades.”

Weightless

Weightless meanwhile is another LPWAN technology developed by the Weightless SIG. According to the group, the technology offers data in the 169/433/470/780/868/915/923 MHz channels at rates from 200 bps to 100 kbps, with a range of 2 kilometers in an urban development.

USERS DECIDE

HaLow, RPMA and Weightless add to Sigfox, LoRaWAN and NB-IoT to form the primary LPWAN technologies at the moment. According to most of the organizations or alliances that we spoke to, there is room for these technologies to coexist in the LPWAN arena, which is unlikely to see a consolidation of technologies or a “winner-takes-all” scenario. Rather, according to them, it’s up to the user to determine what is the right technology for them, which should be based on various factors — for example how long is the range, how much data is transmitted by the devices at what intervals, or is the battery life measured in months or years.

“The answer depends on the developer’s application requirements and the environments in which the LPWAN solution will be deployed. Three key factors to consider include power consumption, payload and performance — that is, wireless transmission over distance and through barriers like concrete walls,” said Pannell.

“The primary question that users should ask themselves is what are the needs of my use case — what kind of battery life do I need, what kind of range do I need, and what type of data throughput do I need? Then, find the specific technology that fits those needs,” Ryder said.

“Users should choose the technology that best suits IoT applications. The technology should be cost-effective, able to scale, and have the longevity to support many of the IoT devices that can operate for over a decade,” Myers said. “Additionally, a network that has been designed to serve machines only typically uses a fraction of the data that other networks consume. Most IoT applications (nearly 85 percent) use less than 3 MB of data per month, so this should be considered before investing in a network that may be overkill for a typical application.”

ENDURING POPULARITY

LPWAN is a broad term that addresses various technologies enabling long-distance transmission of small data between low-power devices. At this time it remains unlikely that one dominant technology is going to emerge any time soon. What we can foresee, however, is that LPWAN is going to remain popular given the rise of IoT and its applications in smart city and other projects.