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Haier Unveils Complete Smart Home Solutions at CES

By IoT – Internet of Things

The 51st CES, the world’s most influential event for the technology industry, was held in Las Vegas from January 9th to 12th, Pacific Time. Intelligence and technology became the mainstream at this year’s session, where more than 3,900 exhibitors from around the world showcased their latest technological achievements. Chinese brand Haier displayed the world’s first […]

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Senet and Sagemcom partner to demonstrate LoRaWAN geolocation services at CES 2018

By Zenobia Hegde

Senet, a provider of cloud-based software, global connectivity service platforms and network build-out for the Internet of Things (IoT), and Sagemcom, a French group providing high added-value smart terminals market, have partnered to demonstrate LoRaWAN™ geolocation services at CES 2018.

With research indicating that over 50% of the IoT market is best suited to Low Power Wide Area Network (LPWAN) connectivity and a third of the world’s 15 billion connected devices forecasted to be dependent on geodata by 2020, LoRa™ geolocation is well positioned to offer power efficient and cost-effective location capability for a wide range of applications that do not require the precision of GPS.

Sagemcom and Senet are demonstrating LoRaWAN tracking capabilities through the integration of Sagemcom’s geolocation solver software with Senet’s LoRaWAN network. Sagemcom Siconiaä multi-sensor devices have been placed on mobile and stationary assets throughout the Las Vegas area and are reporting geolocation and environmental data over the Senet LoRaWAN network.

Geolocation information is being combined with other readings and visualised in demo applications that illustrate how users across industries can leverage IoT data for asset management, inventory, security and maintenance. Sagemcom is conducting demonstrations in the Venetian, Tech West, Level 3, meeting rooms 3301A/3201B.

Eric Rieul

“LoRaWAN geolocation brings a strong disruption in the asset management and logistic markets and is a viable commercial technology for a wide variety of IoT applications where GPS is cost and/or battery life prohibitive,” said Eric Rieul, CEO of Sagemcom Energy & Telecom SAS. “Through our tight collaboration with Senet, we are able to rapidly deliver these new features and capabilities to market and successfully drive new business opportunities where the promise of IoT had previously been slowed by cost and scalability challenges.”

“Geolocation is an exciting enhancement to our LoRaWAN connectivity services and opens up new use cases that are expected to drive substantial revenue streams for LoRaWAN network operators and solution providers,” said Dave Kjendal, CTO of Senet. “We are pleased to be partnered with Sagemcom to deliver such high-performance and highly differentiated solutions to the market.”

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Qorvo IoT Solution Powers Senior Home Care

By IoT – Internet of Things

Qorvo® is helping seniors live more independently in their homes with the help of a new eHealth system powered by the company’s chipsets for the Internet of Things (IoT). Health insurer CZ will provide the system to 3,000 elderly customers in the Netherlands, marking the first deployment of a senior smart home solution by a […]

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Infineon supports NVIDIA DRIVE Pegasus AI platform for Level 5 autonomy

By Zenobia Hegde

Infineon Technologies AG expanded its safe automated driving collaboration with NVIDIA, announcing that its AURIX ™ TC3xx series automotive microcontroller (MCU) will be used in the NVIDIA DRIVE™ Pegasus AI car computing platform. The supercomputer for autonomous vehicles meets the requirements of Level 5 autonomous driving as defined by the Society of Automotive Engineers (SAE).

Infineon now supplies the safety microcontroller, safety power supply IC, and selected vehicle communication interface ICs for several NVIDIA DRIVE systems. The devices support increasing levels of autonomous driving capability, ranging from auto cruise functionality to auto chauffeur and full autonomy.

Development time reduced by up to 40%

The collaboration enables users of the platform to access AURIX capabilities through an AUTOSAR-compliant software stack. This potentially allows re-use of higher-level application code and can likely reduce development time by 20% to 40% compared to traditional platforms.

“Infineon has a 30+ year history of delivering the safety and reliability technology that is critical at all levels of autonomous driving. We make cars safer, smarter and greener,” said Ritesh Tyagi, head of the Silicon Valley Automotive Innovation Centre (SVAIC) at Infineon. “Collaboration between Infineon and NVIDIA through multiple generations of DRIVE car computers provides the automotive industry with a consistent platform for development and market deployment across all classes of driver-assist and fully autonomous systems.”

“NVIDIA’s DRIVE AI vehicle supercomputers deliver up to 100-times more computational horsepower than the most advanced cars on the road today,” said Gary Hicok, senior vice president of Hardware Development at NVIDIA. “Their multiple levels of redundancy and safety functionality demand a proven, widely deployed safety architecture, like that of the AURIX TC3xx series.”

Infineon microcontrollers power automated driving

The multicore microcontrollers help the platform meet the highest possible functional safety standard (ISO 26262 ASIL-D) for Advanced Driver Assistance Systems (ADAS) and self-driving systems. The AURIX TC3xx series offers significant upgrades in performance compared to the previous generation to enable scalable and efficient platforms.

Gary Hicok

Key features of the AURIX microcontrollers are relevant to implementing both ADAS and Automated Driving (AD) functionality. That includes advanced support for ASIL-D applications assisted by more than 3,000 DMIPS of safety computational performance, self-test mechanisms in hardware for logic and memory, integrated monitoring, and redundant peripherals.

In addition, the latest generation of AURIX offers a greater level of integration, enhancements in high-speed connectivity interfaces, and advanced security capabilities.

The microcontroller handles a key layer of the safety supervision framework of the platform and performs monitoring functions for the SoC. In turn, AURIX plays an important role for DRIVE Pegasus to achieve system-level ASIL-D safety.

It also manages the power-up sequence and monitoring of warning signals for the self-driving platform. In addition, the AURIX microcontroller provides the main in-vehicle interfaces for multiple network communication channels to the system, such as CAN FD, Gigabit Ethernet, and FlexRay.

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Smart grids to save city dwellers $14bn in energy costs by 2022, says Juniper Research

By Zenobia Hegde

New data from Juniper Research has found that the development of smart grids linked to smart cities will result in citizens saving $14 billion (€11.67 billion) per annum in energy bills by 2022. This is up from the $3.4 billion (€2.83 billion) saving estimated for 2017, resulting from smart metre rollouts, energy-saving policies and sensing technology to improve grid reliability and efficiency.

As part of the new study, Smart Cities: Strategies & Forecasts in Energy, Transport & Lighting 2017-2022, Juniper analysed and ranked global cities to assess their performance and approach towards energy consumption and delivery:

Seoul
San Francisco
New York
Portland, OR
Barcelona

“Seoul’s large-scale deployment of electric vehicle charging infrastructure, smart street lighting and smart metre rollouts will undoubtedly accelerate the development of smart grid infrastructure to manage these elements,” remarked research author Steffen Sorrell.

Steffen Sorrell

Renewables & Blockchain transform the grid

Juniper found that the high cost of carbon capture and storage technology was making fossil fuel investment uneconomical. With the projected cost of renewable energy sources such as wind and solar falling close to $60 (€50.03) per MWh (Megawatt hour) in 2022, it predicted the inevitable investment would force accelerated deployment of smart grid solutions to reliably scale renewable energy.

Furthermore, the research argued that the business case for distributed renewable generation would be strengthened by the application of blockchain. Here, dramatic efficiencies along the value chain could be achieved, by simplifying a certification system currently susceptible to accounting errors and increased costs.

Policy required

Juniper found that with smart city budgets now being discussed and allocated worldwide, policy had become more important than the technology. For instance, it argued that MaaS (Mobility as a Service) could drastically reduce city congestion by virtue of nearly eliminating the need for private transport.

Nevertheless, it claimed that MaaS would never come to fruition without strict city policy enforcement. For that reason, it predicted that cities in Far East Asia would become ‘true’ smart cities earlier than their Western counterparts.

Juniper Research provides research and analytical services to the global hi-tech communications sector, providing consultancy, analyst reports and industry commentary.

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