5G Open RAN Laboratory: A New Era for Riga Technical University with IS-Wireless

IS-Wireless collaborates with Riga Technical University to set up a state-of-the-art 5G Open RAN Laboratory. This venture aims to provide a robust network for both educational and expansive research purposes, heralding a new chapter in mobile network research and development.
Deployment of Private 5G Network by IS-Wireless at Riga Technical University
Image Credit: IS-Wireless and Riga Technical University

Introduction

IS-Wireless, in collaboration with Riga Technical University (RTU), is pioneering the establishment of a 5G Open RAN laboratory. This venture aims to provide a robust network for both educational and expansive research purposes, heralding a new chapter in mobile network research and development.

Challenges or Objectives


The global mobile network landscape is rapidly evolving. With the private 5G market projected to skyrocket to $129.6 billion by 2032, there’s an urgent need for research, development, and hands-on educational initiatives to keep pace with global trends and harness the potential of these networks.

Solution Implemented

An agreement was inked between IS-Wireless, a prominent Open RAN 5G provider, and RTU. This partnership signifies the beginning of a joint endeavor to deploy a private 5G network at RTU. The primary objective is to foster educational, research, and development activities in the realm of 5G.

Supporting Evidence

The anticipated value of the private 5G market, which was $2.6 billion in 2022, is predicted to soar to $129.6 billion by 2032. This exponential growth underscores the importance and timely relevance of the laboratory’s establishment.

Why the Selected Technology Was the Right Choice?

The choice of 5G Open RAN aligns seamlessly with global mobile network trends. Open RAN offers flexibility, scalability, and innovation, making it the ideal choice for a research-intensive institution like RTU.

Use Case Benefits

The deployment of the private 5G network at RTU is poised to:

  • Catalyze advanced research in the field of mobile networks.
  • Offer students hands-on experience with cutting-edge technology.
  • Propel Central Eastern Europe to the forefront of 5G research and innovation.

Industry Impact

This collaboration sets a precedent for academic institutions and industry leaders globally. By integrating research, education, and practical application, it paves the way for future innovations in the realm of 5G networks.

Company’s Role (IS-Wireless)

IS-Wireless, with its expertise in 5G deployments, plays a pivotal role in bringing this project to fruition. As expressed by CEO Sławomir Pietrzyk, their experience ensures that the university can harness the full spectrum of educational and research opportunities presented by 5G.

Partners for the Use Case and Their Role

  • Riga Technical University (RTU): Providing the location and infrastructure for the laboratory while also driving research and educational initiatives.
  • Polish Ministry of Foreign Affairs, Polish Investment & Trade Agency, and CEE Digital Coalition: Supporting the 5G Techritory 2023 event in Riga, fostering discussions around Open RAN deployments.

Use Case Status

Being Deployed

Use Case Timeline

The agreement was signed during the 5G Techritory 2023 conference. The official launch of the laboratory at the Faculty of Electronics and Telecommunications followed shortly after, marking just a year since the initial discussions began.

Customer Endorsements

Liene Briede, Vice Rector of Innovations at RTU, emphasized the significance of this collaboration. She highlighted it as a shining example of swift, collaborative progress, showcasing the synergy between the research community and the industry. The venture encapsulates the region’s competitive edge, spotlighting its capability for rapid, innovative strides.


Recent Content

JLR is transforming automotive manufacturing by deploying Ericsson Private 5G at its Solihull plant, enabling AI-driven automation, real-time IoT connectivity, and enhanced production efficiency. This Industry 4.0 transformation supports AGVs, smart sensors, and real-time analytics, ensuring faster, smarter, and more flexible vehicle production. Learn how JLR is leading the next era of digital manufacturing.
The Lower Colorado River Authority (LCRA) is partnering with Ericsson to deploy a private LTE network across 68 Texas counties, ensuring enhanced grid security, real-time communications, and future 5G readiness. This next-generation infrastructure will support electric cooperatives, municipalities, and critical services, reducing cybersecurity risks and improving operational efficiency for utilities statewide.
SailGP is enabling high-speed sailing with Ericsson Private 5G and Edge Computing, ensuring real-time race analytics, seamless connectivity, and immersive fan engagement. With Cradlepoint edge routers in each F50 catamaran, teams process over 53 billion data points per race day, optimizing performance and ensuring fairness. This 5G-powered digital transformation sets a new benchmark for sports connectivity.
Oulu University Hospital has deployed Europe’s first Private 5G Standalone (SA) network, revolutionizing healthcare with real-time patient monitoring, AI-assisted imaging, and augmented reality (AR) for surgery. Built by Boldyn Networks using Nokia Modular Private Wireless (MPW) technology, this high-speed, ultra-reliable network ensures seamless data flow, improved diagnostics, and enhanced patient safety. Learn how 5G is shaping the future of smart hospitals.
5G coverage in the U.S. varies significantly between urban and rural areas. While T-Mobile leads in availability, AT&T leverages FirstNet for rural expansion, and Verizon focuses on C-band spectrum. States like Nevada and Illinois rank high for 5G access, while Wyoming struggles with coverage gaps. With continued investment from major carriers and the FCC’s 5G Fund, rural connectivity is set to improve nationwide. Source: Ookla® (This article is based on Ookla’s research and Speedtest Intelligence® data).
AI is playing a key role in telecom security by strengthening threat detection, fraud prevention, and regulatory compliance. As 5G, IoT, and edge computing expand, telecom networks face cyber threats such as AI-specific attacks, network intrusions, and data breaches. AI-powered security solutions provide automated threat response, anomaly detection, and AI lifecycle protection, helping telecom providers maintain a secure and resilient network infrastructure.

Download Magazine

With Subscription

It seems we can't find what you're looking for.

Subscribe To Our Newsletter

Scroll to Top