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European Researchers Develop AI-Native Wireless Networks With NVIDIA 6G Research Portfolio
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欧洲各国正积极利用NVIDIA平台、工具和库,加速6G技术的研发,将人工智能深度融入其中。这项技术旨在构建一个以AI为核心的平台,推动创新、提供新服务、改善用户体验并提升可持续性。自NVIDIA 6G开发者计划启动以来,已有超过200家来自30多个欧洲国家的电信组织采用NVIDIA技术加速研发。英国、芬兰、法国和德国的研究机构也在积极探索AI在无线通信中的应用,包括利用AI提升网络效率、优化无线信道估计、以及开发神经形态计算用于机器人控制等。NVIDIA提供了全面的6G研究解决方案,包括加速计算基础设施和软件库,并提供培训和开发者支持,以推动AI原生6G的发展。

💡英国政府与NVIDIA合作,旨在推动英国成为先进连接技术开发的全球领导者,重点是利用AI提升电信网络的智能化、效率和可靠性。英国领先大学将获得AI工具、6G研究平台和培训资源,以支持AI原生无线网络的研究与开发。

📡芬兰奥卢大学正在利用NVIDIA Isaac Sim进行无线信道估计研究,该项目涉及实时网络数字孪生,利用合成激光雷达数据。此举旨在促进AI和机器学习在集成传感与通信(ISAC)中的应用,使网络能够感知物理世界,从而优化运营并支持6G接入系统的建模。

🤝法国OpenAirInterface (OAI) 与NVIDIA合作,通过整合OAI的开源虚拟化和开放RAN栈与NVIDIA AI Aerial和NVIDIA Sionna系统,推动AI原生无线网络的发展。OAI为Aerial Commercial Testbed提供第2+层软件,并为Sionna Research Kit提供全栈O-RAN软件。

🧠德国弗劳恩霍夫HHI研究所正在利用NVIDIA AI Aerial套件,进行神经形态无线认知研究,用于机器人控制。研究涉及基于事件的摄像头捕捉机器人运动,并将信息传递给神经形态处理器,然后使用神经网络模型进行解码和手势识别,以增强基站传输质量。

🔬德国罗德与施瓦茨公司与NVIDIA合作,利用数字孪生技术和高保真光线追踪,创建了一个强大的框架,用于在真实无线电环境下测试5G-Advanced和6G神经接收器,从而为下一代接收器架构的测试铺平道路。

⚙️瑞士苏黎世联邦理工学院和NVIDIA合作开发了基于机器学习的DUIDD架构,旨在提高基站的数据传输能力,该架构预计将在ARC-OTA测试床上实现。

Using NVIDIA platforms, tools and libraries, European telecommunications institutions are accelerating efforts to develop 6G — the next generation of cellular technology, with AI woven in from the start.

6G will be an AI-native platform that fosters innovation, enables new services, enhances customer experiences and promotes sustainability. Since the launch of the NVIDIA 6G Developer Program last year, over 200 telecommunications organizations across 30+ European countries have used NVIDIA technologies to accelerate their work.

In the U.K., the Department for Science, Innovation and Technology announced a collaboration with NVIDIA to promote the nation’s goals for AI development in telecom. Leading U.K. universities will gain access to a suite of powerful AI tools, 6G research platforms and training resources — including NVIDIA AI Aerial and Sionna — to bolster research and development on AI-native wireless networks.

“This collaboration between the U.K. government and NVIDIA marks a pivotal step in our ambition to make the U.K. a global leader in the development of advanced connectivity technologies,” said Sir Chris Bryant, minister of state for data protection and telecoms of the U.K.“The use of AI in telecoms will make our networks more intelligent, efficient and reliable, and by equipping our world leading academia and researchers with cutting-edge AI tools and training, we will accelerate innovation that improves the everyday digital experience for people across the country.”

In Finland, the University of Oulu is conducting research for wireless channel estimation with a real-time network digital twin that taps into synthetic lidar data, using the NVIDIA Isaac Sim reference application for robotics simulation.

The project enables advanced development of AI and machine learning features for integrated sensing and communications, or ISAC, a capability that allows the network itself to act as a sensor of the physical world to enhance operations. The project also enables modeling of the 6G access system.

France-based OpenAirInterface (OAI) and NVIDIA are collaborating to advance AI-native wireless networks by integrating OAI’s open-source virtualized and open RAN stack with the GPU-accelerated NVIDIA AI Aerial– and NVIDIA Sionna-based systems. OAI provides the layer 2+ software for Aerial Commercial Testbed and full-stack O-RAN software for Sionna Research Kit, enabling researchers to innovate in 5G and 6G radio access networks using AI and machine learning at every layer.

In Germany, Fraunhofer HHI is conducting groundbreaking research on neuromorphic wireless cognition for robotic control using the NVIDIA AI Aerial suite of accelerated computing platforms and software for designing, simulating and operating wireless networks.

The research involves an event-based camera that senses and captures robotic movements, and forwards the information to a neuromorphic processor. Then, neural network models are used for decoding and gesture recognition to boost transmission over the base station, enhancing the quality of the connection.

Rohde & Schwarz, also based in Germany, is helping set new benchmarks in AI-powered wireless communication research with its latest milestone in neural receiver design and testing.

Showcased in March at Mobile World Congress in Barcelona, Rohde & Schwarz’s innovative proof of concept — developed in collaboration with NVIDIA — integrates advanced digital twin technology and high-fidelity ray tracing to create a robust framework for testing 5G-Advanced and 6G neural receivers under real-world radio environments. Tapping into simulations built with the NVIDIA Sionna library, this initiative paves the way for more efficient, accurate and reliable testing of next-generation receiver architectures.

ETH Zurich and NVIDIA are working on 6G projects related to the performance of AI-native 6G networks. This includes a new machine learning-based architecture, called DUIDD (Deep Unfolded Iterative Detector Decoder), which was developed using NVIDIA Sionna to improve the amount of data a base station can transmit or receive using information learned from its local environment. DUIDD is expected to be implemented on the real-time, over-the-air NVIDIA AI Aerial commercial testbed, dubbed ARC-OTA.

Other projects include a new approach to machine learning-assisted model training, machine learning approaches for positioning mobile devices using channel charting, and device identification based on their radio frequency signature, developed with NVIDIA 6G research tools.

The University of Leeds is developing an agentic architecture for integrating large language models into RAN operations to realize scalable, intelligent orchestration. The research involves creating standardized frameworks for deploying agent-based architectures, establishing key performance indicators for benchmarking performance and building templates for new agents to enhance performance and reduce operational costs.

Europe Key to Developing AI-Native 6G

Europe’s role in wireless networks dates back to the 1987 development of the Global System for Mobile Communications, or GSM, a widely used standard for digital cellular communication.

Today, the European Union continues to drive innovation through substantial governmental support and flagship initiatives such as the Smart Networks and Services Joint Undertaking, 6G SNS and the 6G Flagship project. These programs unite universities, research institutions and industry to create next-generation AI-native networks, pioneering work in AI integration, sustainability and security while educating future industry experts.

Major European telecommunications vendors play a vital role in shaping the vision and standards for 6G through their leadership and participation in major research consortia.

NVIDIA Technologies for AI-Native 6G Research and Development

For these European 6G researchers, the NVIDIA 6G research portfolio provides a three-computer solution for 1) developing and training AI algorithms, 2) simulating them and 3) deploying them into wireless stacks for AI-native 6G.

NVIDIA AI Aerial tools for AI-native wireless networks research and development, based on the three-computer solution.

The portfolio includes accelerated compute infrastructure, as well as software libraries, including NVIDIA AI Aerial, Sionna and NVIDIA CUDA-X for accelerating workloads. NVIDIA provides the world’s only 6G research portfolio with open-source and source-code offerings, cloud and on-premises options, and full-stack systems or components-level options for researchers to choose the best tool for their mission.

In addition, the NVIDIA Deep Learning Institute provides training on skills essential to 6G development, such as simulating physical environments.

The NVIDIA 6G Developer Program offers early access to advanced tools, technical support and a global community of innovators. So far, more than 2,000 researchers across 85 countries have joined the program, leading to over 190,000 downloads of NVIDIA tools and 350+ citations in technical papers and journals.

Learn more about the latest AI advancements for telecom and other industries at NVIDIA GTC Paris, running June 11-14 at VivaTech, including a special address from Ronnie Vasishta, senior vice president of telecom at NVIDIA.

Watch the NVIDIA GTC Paris keynote from NVIDIA founder and CEO Jensen Huang at VivaTech 2025, and explore GTC Paris sessions.

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