The trials, conducted over Verizon’s network (using C-band Special Temporary Authority granted to Verizon by the FCC) in Texas, Connecticut and Massachusetts, used Samsung’s fully virtualized RAN (vRAN) solution built on its own software stack and C-band 64T64R Massive MIMO radio in coordination with Verizon’s virtualized core. The trials achieved speeds commensurate with traditional hardware-based equipment.
Virtualization is critical to delivering the services promised by advanced 5G networks. Key 5G use cases such as massive scale IOT solutions, more robust consumer devices and solutions, AR/VR, remote healthcare, autonomous robotics in manufacturing environments, and ubiquitous smart city solutions, will heavily rely on the programmability of virtualized networks.
Cloud native virtualized architecture leads to greater flexibility, faster delivery of services, greater scalability, and improved cost efficiency in networks, paving the way for wide-scale mobile edge computing and network slicing. This technology enables Verizon to rapidly respond to customers’ varied latency and computing needs. Virtualization will also lower the barrier to entry for new vendors in the ecosystem. New entrants will accelerate innovation, reduce operating costs, and lay the groundwork for flexible network and cloud infrastructure closer to the customer, eventually leading to single digit millisecond latency.
“We’re proud to mark another milestone following our first large-scale commercial 5G vRAN deployment for Verizon, which is currently servicing millions of users. This trial reinforces our commitment to helping operators evolve their advanced 5G networks,” said Junehee Lee, Executive Vice President and Head of R&D, Networks Business at Samsung Electronics. “This achievement represents our dedicated efforts in leading the transition to virtualization, and helping Verizon realize greater efficiency, scalability and flexibility. vRAN is a powerful enabler for network transformation, and we aim to continue leading this journey.”