Ericsson, Vodafone, and Qualcomm Technologies recently pioneered data transmission via RedCap on a European network for the first time, unlocking a more streamlined, efficient mode of connectivity for IoT and other devices. Tested on Vodafone Spain’s 5G platform, the Ericsson’s RedCap technology enhances connectivity potential while providing economic and efficient data transmission. Furthermore, the demonstration introduced a new technology, New Radio Light, for extending battery life of customer devices.
5G technology is quickly escalating into an exciting, innovative space, largely due to a process called network slicing. This technique enables a vast number of dynamic network slices, each with unique attributes defined by its user. Despite being in the primary stages, an array of business opportunities are on the horizon like gaming, vehicle-to-everything (V2X), IoT, and mobile edge computing, as the technology advances. Critical remote services, such as remote robotic surgeries requiring ultra-reliability over latency, become possible with robust and reliable 5G slices.
Japanese telecommunications giant NTT Docomo is set to revolutionize its commercial network with the adoption of Nokia’s Open RAN compliant 5G AirScale baseband kit. The comprehensive deployment includes both Centralized Unit (CU) and Distributed Unit (DU) software, emphasizing Nokia’s industry leadership in the mobile communication sector.
Travelers and businesses at Edinburgh Airport can expect notably improved 4G and 5G coverage, courtesy of telecom giant Vodafone. This upgrade not only means faster data speeds and better call quality, but could also pave the way for exciting new services such as digital passport controls and contactless check-in. Despite the complex infrastructure involved, Exchange Communications assures the ensuing benefits will outweigh the cost.
Navigating uncharted territory in the telecommunications ecosystem, Stratospheric Platforms Limited (SPL) alongside other UK giants, aims to forge advanced airborne 5G connectivity. With an ambitious endeavor backed by Britten-Norman and Marshall Futureworx, the collaborative effort seeks to birth a High-Altitude Platform with an airborne antenna – a revolution steering us to high-performing 5G from the stratosphere itself. Imagine an unmanned aircraft, fuelled by liquid hydrogen, its vast wingspan of 56 meters and lightweight structure promising flight endurance of over a week.
The UK’s Department for Science, Innovation and Technology earmarked £36 million from its budget for 10 regions, highlighting a drive towards 5G innovation. Projects range from enhancing port operations to supporting advanced manufacturing and boosting tourism. However, an interesting aspect to note is the unique applications, including agricultural advancements in Sussex and the creation of 5G science parks in Oxfordshire.
As Great Wall Motors’ subsidiary, EA, surges ahead in the sphere of intelligent equipment and automated production, one can’t help but note its acceptance of a 5G advanced network, shaking off constraining wired networks of yore. The move is tipping the scales in favor of increased efficiency and dependability in the production line, opening a new chapter in China’s modernization.
As the year draws to a close, the Radio and Internet Services Department (RDI) is inching closer to launching private local spectrum licenses for enterprise clients. Set to equip them with the 3.5GHz spectrum and power the assembly of private 5G networks, this promises to transform sectors such as Virtual Reality and autonomous vehicles. However, some concerns have borne by airports and ports on fair allocation.
An enthusiastic exploration of advancing telecommunication technologies, particularly 5G and its bigger sibling, 5.5G, was recently exhibited by Huawei’s Antenna Business Unit President, Eric Zhao. Eric emphasizes how competent R&D pursuits are imperative to propel antenna performance, a critical aspect in 5.5G proliferation. He highlights the enhancement of user experience, operational efficiency and service extension as key objectives. Moreover, Huawei’s strides in working towards the goals of unrestricted deployment, zero signal loss, and ‘zero touch’ O&M demonstrate their ambition. Yet, the journey towards these ambitious targets is far from over.
As 5G Fixed Wireless Access (FWA) evolves with its next phase, 5G Advanced, worldwide research indicates growth and potential for higher speeds and reduced latency. The Middle East currently showcases impressive progress with over 1.6 million 5G FWA users. Yet, debates exist over its future, exploring whether 5G FWA will remain an affordable alternative to fixed broadband or tap into its speed for new applications. Moreover, cost is a concern for Customer Premises Equipment (CPE) devices, considered a current hurdle in advancing 5G FWA.