Showing posts with label wireless. Show all posts
Showing posts with label wireless. Show all posts

Saturday, December 7, 2019

Martello completes initial phase of testing its SD-WAN offering on ENCQOR 5G

Martello Technologies announced this week that it has completed the initial phase of testing for its SD-WAN solution as part of a project with ENCQOR 5G, Canada’s initial pre-commercial fifth-generation (5G) wireless network for open innovation. 

Among the first SD-WAN vendors in Canada to initiate a project on the ENCQOR 5G testbed, Martello aims to demonstrate that its SD-WAN solution can deliver stable and predictable handling of unified communications (UC) and other real-time IoT traffic on 5G networks.


Launched in March last year, ENCQOR 5G is funded by the Government of Canada through the Strategic Innovation Fund, along with the Governments of Quebec and Ontario as well as leading industry players Ericsson, Ciena, Thales, CGI and IBM. ENCQOR 5G is coordinated by Innovation ENCQOR, and delivered in Ontario by Ontario Centres of Excellence (OCE) and in Quebec by Innovation ENCQOR, CEFRIO and Prompt.

ENCQOR 5G brings together SMEs, industry, government, researchers and academia in both Quebec and Ontario to collaborate on the commercialization of disruptive products, processes, and services, providing a first-to-market advantage and to improve the ability of SMEs to scale.


According to Gartner, in 2020, worldwide 5G wireless network infrastructure revenue will reach $4.2 billion, an 89% increase from 2019 revenue of $2.2 billion1. The enterprise will increasingly become the focus of 5G services, expanding into new real-time and mobile IoT applications such as autonomous vehicles, remote healthcare, the mobile office, and agriculture and retail sector applications.

The project with ENCQOR 5G underpins current Martello projects and the development of new solutions, while fostering collaboration with companies within the alliance. Following on Martello’s successful mobile SD-WAN for autonomous vehicles proof of concept with BlackBerry QNX in May 2019, the project with ENCQOR 5G leverages the Company’s leadership and unique expertise in network connectivity for real-time and mobile IoT applications.

In the initial phase of the project, Martello has demonstrated compatibility with LTE-A, a precursor to 5G; in later phases, Martello will test UC traffic specifically, over LTE-A and 5G.

Martello’s SD-WAN and link balancing technology provides network connectivity in challenging environments, including in developing regions with a limited telecom infrastructure. With 5G emerging as the next generation network, Martello is future-proofing its SD-WAN solution to ensure that challenging mobile IoT applications on 5G networks, such as autonomous vehicles and the distributed, mobile office, stay seamlessly connected to mobile networks.


“Through our work with the ENCQOR 5G testbed, we have an opportunity to engage with many of the world’s top technology players, from Ericsson to CGI, in accelerating Canadian innovation in 5G,” said John Proctor, president and CEO of Martello. “ENCQOR 5G is central to Martello’s strategy, giving us the ability to integrate solutions at the earliest points in the development cycle and demonstrate Martello’s 5G readiness.”

“Martello is leading SD-WAN innovation on 5G networks with ENCQOR 5G,” said Claudia Krywiak, president and CEO, Ontario Centres of Excellence (OCE), the coordinating member of ENCQOR 5G for Ontario. “Businesses like Martello are paving the way to Canada’s 5G future, with the support of private industry, federal and provincial governments.”

Nokia Bell Labs prize awarded to new processor technology, pioneered by student and professor team from University of California at Berkeley

Nokia announced this year’s Nokia Bell Labs Prize, the global competition to recognize game-changing innovations that attracted more than 250 applications from 31 countries around the world. The 2019 prize has been awarded to a student and Professor team from the University of California at Berkeley. 

PhD student Tianshi Wang and Prof. Jaijeet Roychowdhury received US$100,000 for winning the competition, and the opportunity to pursue an expanded collaboration with Nokia Bell Labs. 


The pair won the prize for their work on “A Classic Spin on Quantum Computing." Their innovation is in a new type of processor element that will be significantly more efficient in computing the answers to discrete optimization problems. Their innovation will complement conventional digital processors (CPUs and GPUs) by tackling a variety of computationally hard problems of importance in many diverse areas, including 5G communication systems; complex tasks in planning, scheduling and control; and even the discovery of new drugs.


“The Bell Labs Prize is a unique opportunity for innovators around the world to collaborate with Bell Labs researchers to expand the potential of their innovations,” said Marcus Weldon, Nokia Corporate CTO and president of Nokia Bell Labs. “The competition is highly competitive, reducing more than 250 applicants to 5 finalists, who must convince their Bell Labs mentors and the judging panel that their innovation has the potential to change the world. This year’s winners have certainly met that criteria, by pioneering a new processor technology that will allow a large set of complex optimization problems to be solved with unprecedented efficiency and at low cost. It is truly impressive work and we will be closely collaborating with the team to help them realize this potential.”

The 2019 Nokia Bell Labs Prize competition was launched in April. Proposals were reviewed by Nokia Bell Labs researchers and evaluated based on three criteria, including whether the idea has a "10X innovation potential" to change the world; the proposal's technical merit; and the overall feasibility of the proposed idea.

The proposals were narrowed down to a select group of outstanding candidates who were given the opportunity to partner with Nokia Bell Labs experts to help expand the impact of their proposals. Five finalists were invited to the final judging event held this week at Nokia Bell Labs headquarters in Murray Hill, New Jersey. 

The judging panel was comprised of Weldon, Nobel Laureate Robert Wilson, world-renowned computer scientist and Bell Labs alum Al Aho, as well as previous Nokia Bell Labs Prize winners Samory Kpotufe (2018) and Kaushik Sengupta (2017).


Second place and $50,000 went to Dr. Sheng Xu, Assistant Professor in the Department of Nanoengineering at University of California at San Diego for his submission, “There is plenty of room under the skin: A wearable’s perspective.” His team have developed an easy-to-use ultrasonic patch that can provide noninvasive, continuous and unobtrusive monitoring of deep tissues. This innovation will not only impact consumers, who will have access to data on their hearts, lungs, livers, and GI tracts, but also healthcare systems allowing non-invasive continuous patient monitoring and ultrasonic imaging.

Third place and $25,000 were presented to Maximilian Arnold, Sebastian Cammerer, Sebastian Dörner, Stephan ten Brink of Stuttgart University in Germany for their innovative work on “Leveraging 5G Infrastructure for a Robust Positioning System.” Their indoor positioning system uses existing wireless communications networks to determine location which will allow ubiquitous, low cost tracking of all things, with simpler calibration than existing systems, and therefore has the potential to become a foundational part of the next industrial revolution.

Monday, December 2, 2019

Intel completes sale of its smartphone modem business to iPhone maker Apple

Intel announced on Monday that it has completed the sale of the majority of its smartphone modem business to Apple. This transaction, valued at US$1 billion, was announced in July. 


As previously disclosed, this transaction enables Intel to focus on developing technology for 5G networks while retaining the option to develop modems for non-smartphone applications, such as PCs, internet of things devices and autonomous vehicles.


Intel and Apple have signed an agreement for Apple to acquire the majority of Intel’s smartphone modem business. Approximately 2,200 Intel employees will join Apple, along with intellectual property, equipment and leases. 

Combining the acquired patents for current and future wireless technology with Apple’s existing portfolio, Apple will hold over 17,000 wireless technology patents, ranging from protocols for cellular standards to modem architecture and modem operation. 


Intel will retain the option to develop modems for non-smartphone applications, such as PCs, internet of things devices and autonomous vehicles.


Intel opposes Qualcomm’s appeal in US District Court; files brief supporting FTC

Intel files a brief supporting the Federal Trade Commission (FTC) and opposing Qualcomm’s appeal of the judgment rendered in May against Qualcomm by the United States District Court, Northern District of California. 

The District Court found that “Qualcomm’s licensing practices have strangled competition in the CDMA and premium LTE modem chip markets for years, and harmed rivals, OEMs and end consumers.” The District Court also found that Qualcomm’s conduct “unfairly tends to destroy competition itself.”

Intel agrees with the District Court’s findings. Intel suffered the brunt of Qualcomm’s anticompetitive behavior, was denied opportunities in the modem market, was prevented from making sales to customers and was forced to sell at prices artificially skewed by Qualcomm. 


Qualcomm would have you believe that its position in the market today — as the last surviving U.S. supplier of premium modem chips — is due to its “ingenuity and business acumen,” and that its rivals in the market failed simply because “they did not offer good enough chips at low enough prices.” This is simply not true.

Instead, as detailed in the District Court’s opinion and in our brief, Qualcomm maintained its monopoly through a brazen scheme carefully crafted and implemented over many years. This scheme consists of a web of anticompetitive conduct designed to allow Qualcomm to coerce customers, tilt the competitive playing field and exclude competitors, all the while shielding itself from legal scrutiny and capturing billions in unlawful gains.

The victims were Qualcomm’s own customers (original equipment manufacturers or OEMs), the long list of competitors it forced out of the modem chip market, including Intel, and ultimately consumers. 

Intel fought for nearly a decade to build a profitable modem chip business, and invested billions, hired thousands, acquired two companies and built innovative products that eventually made their way into Apple’s iPhones, including the most recently released iPhone 11. 

But when all was said and done, Intel could not overcome the artificial and insurmountable barriers to fair competition created by Qualcomm’s scheme and was forced to exit the market this year.


“As I have pointed out before, the District Court’s decision finding Qualcomm violated the antitrust laws comes on the heels of governmental entities around the globe reaching the same conclusion,” wrote Steven R. Rodgers is executive vice president and general counsel at Intel, in a post. “As a result of its anticompetitive practices, Qualcomm has been fined nearly $1 billion in China, $850 million in Korea, $1.2 billion by the European Commission and $773 million in Taiwan (later reduced in settlement). The FTC, however, did not seek monetary relief. Instead, it sought injunctive relief to prevent Qualcomm from continuing to engage in its unlawful conduct.”

Among other things, the District Court prohibited Qualcomm from continuing to implement the central component of its scheme, its coercive “no license, no chips” (NLNC) policy. Under the policy, Qualcomm cuts off handset OEMs’ purchases of modem chips unless they enter into a patent license agreement on Qualcomm’s terms. These onerous, one-sided terms enable Qualcomm to artificially lower the price of its modems while simultaneously inflating customers’ costs of using modem chips manufactured by competitors, like Intel, by charging royalties as large as the price of the modems themselves. 

The District Court concluded that the NLNC policy, together with other anticompetitive behavior on Qualcomm’s part, unlawfully distorted and, in fact, destroyed the competitive playing field.

The world benefits from fair competition in the wireless technology market. Given the importance of wireless technology to the future of connected computing, including the revolutionary promise of 5G, we strongly support the efforts of the FTC and other law enforcement agencies to require Qualcomm to obey the laws and compete on a level playing field.

“We hope our amicus brief will help in clarifying the full extent of the harm that Qualcomm’s unlawful behavior has caused and will continue to cause if left unchecked,” Stevans added.

Sunday, October 27, 2019

Cellwize RAN automation and orchestration platform with VMware, to enable 5G automated end-to-end assurance

Cellwize Wireless Technologies announced that it is working in cooperation with VMware to provide a network-wide 5G automated assurance solution from the core, through the RAN and to the edge. Communication service providers (CSPs) can benefit from a holistic view of the network, enabling them to leverage network intelligence to predict outcomes, and rapidly optimize configurations to provide service resilience and a superior customer experience.

The 5G experience of the future is being created right now, and the existing assurance systems of today are not adequate for the network-element complexity and the large data volumes associated with robust 5G services. 



Starting out as a cloud-based Centralized Self-Organizing Networks (C-SON) provider, Cellwize has evolved its technology into a wider automation architecture that orchestrates ‘zero-touch’ closed-loop functionalities across a multitude of vendor and wireless technologies. Cellwize solutions are enabling the 5G journey for customers across North America, Latin America, Europe and APAC.

Cellwize’s RAN intelligence technology, in cooperation with VMware’s Smart Assurance, an automated service assurance solution, provides operational intelligence and collective management of optical, virtual and physical networks. 

Cellwize RAN automation and orchestration platform delivers an orchestrated ‘zero-touch’ deployment, configuration, optimization and healing of mobile networks across the landscape of vendor and wireless technologies.



VMware Smart Assurance provides an automated approach to operational intelligence to reduce service impact and operations expenses. Its automation maintains a stable configuration to prevent network incidents, proactively detecting abnormal patterns. 

When incidents cannot be prevented, it automatically identifies the root cause of the problem and generates an alert or triggers a remediation workflow. As a result, network operators can focus on delivering service QoS guarantees, meet stringent SLAs, and provide a high-quality customer experience, rather than spend their time troubleshooting network problems.

VMware Smart Assurance automatically discovers the topology of an entire multi-vendor network - including the transport, physical, virtual and services layers - within hours and presents the user with a comprehensive, graphical topology view. As changes happen, the topology and relational map automatically update.

Altran aligns with Baicells to create multi-platform 5G RAN offering to help OEMs and operators monetize 5G faster

Altran has collaborated with Baicells to developed a 5G RAN multiplatform solution using Altran’s decades of wireless expertise. As the 5G ecosystem rapidly expands, a number of original equipment manufacturers (OEMs) are collaborating with Altran to design and deliver solutions that leverage 5G technology for both operators and enterprises. 

Baicells, a cloud-based 4G/5G wireless solutions provider, is the latest OEM to select Altran’s 5G RAN software framework. With Altran’s expertise, Baicells will fast track its 5G RAN solution to support several key markets, including telecommunications, industrial, enterprise and private networks. 

5G is expected to achieve economies of scale over the next two to three years, lowering costs across network architecture. As such, RAN is a critical piece of infrastructure to deliver monetizable use cases. Altran’s innovative 5G RAN software framework enables OEMs to accelerate product development and support deployment roadmaps for operators at a reduced cost. 



The framework uses a single software package that works across both millimeter wave and sub-6GHz for both non-standalone (NSA) and standalone (SA) modes, regardless of platform type. This significantly reduces the cost of maintenance for software releases across different platforms. 

The 5G RAN framework leverages Altran’s decades of wireless expertise, including stack development for 2G, 3G and 4G networks, to support multiple platforms and use cases. It is fully compliant with 3GPP, O-RAN, Open RAN and service control functions (SCF) for femto application platform interface (FAPI) and network FAPI (nFAPI) interfacing, making it interoperable with multiple physical layer (PHY) and remote radio unit (RRU) providers and ecosystems.

“We worked closely with Baicells to create a differentiated 5G RAN solution that reflects the company’s commitment to innovation, while also ensuring that it is cost-effective for operators,” said Dominique Cerutti, chairman and chief executive officer of Altran. “Operators are looking to recoup their investments in 5G infrastructure faster, and the ability to quickly deploy multiple 5G use cases will be critical for achieving a good ROI. To achieve successful 5G deployments, robust RAN solutions will be key.”

Masimo secures FDA clearance for neonatal RD SET Pulse Oximetry sensors with improved accuracy specifications

Masimo announced that RD SET sensors with Masimo Measure-through Motion and Low Perfusion SET pulse oximetry have received FDA clearance ...