Private Network Check Readiness - TeckNexus Solutions

IMDEA Networks Leads 6G Evolution with DISCO6G for Real-Time Sensing & Communication

IMDEA Networks, with partners UC3M, UAM, and UPM, launches DISCO6G—an ambitious 6G project integrating real-time communication and environmental sensing. Led by Jess Omar Lacruz, the initiative focuses on ISAC systems, intelligent surfaces, AI-driven signal optimization, and non-invasive diagnostics to enhance healthcare, smart mobility, and autonomous systems.

On March 24, 2025, IMDEA Networks announced its participation in the DISCO6G project, in collaboration with UC3M, UAM, and UPM, and funded by the Madrid Regional Government. This project is set to significantly enhance the capabilities of future mobile networks through the integration of communication and environmental sensing.

Understanding DISCO6G: 6G Networks with Built-In Real-Time Sensing


DISCO6G stands for the integration of Distributed Sensing and COmmunication for 6G networks. The project aims to develop next-generation mobile networks that not only transmit data but also act as real-time, distributed sensors. This dual functionality is essential for applications requiring high reliability and responsiveness such as in transportation and healthcare systems.

Evolving ISAC Systems: Enhancing 6G Environmental Awareness and Timing

The team at IMDEA Networks, led by senior researcher and principal investigator Jess Omar Lacruz, is focusing on the evolution of Integrated Sensing and Communication (ISAC) systems for 6G networks. One of their key initiatives is the development of advanced ISAC architectures. These architectures are designed to enhance environmental awareness in real-time by integrating distributed sensing across multiple network nodes.

In addition to architectural advancements, the team is tackling the challenge of ultra-precise synchronization across large-scale networks. Accurate timing is crucial for the functionality of autonomous vehicles and the reliability of medical diagnostics. IMDEA Networks is creating solutions to minimize timing errors and developing low-power ISAC technologies suitable for various applications, from healthcare devices to smart city infrastructures.

Solving 6G Challenges: Intelligent Surfaces, AI, and High-Frequency Bandwidth

DISCO6G is addressing several technical hurdles to enable the practical deployment of 6G networks. The project targets the need for low-latency and high-precision data collection and transmission, crucial for transport and biomedical applications. One of the technological challenges involves the use of millimeter and submillimeter waves, which, while offering substantial bandwidth, are susceptible to interference.

To optimize the use of these high-frequency bands, IMDEA Networks is developing reconfigurable intelligent surfaces and refining AI algorithms to enhance signal quality. Additionally, the integration of multiple sensors, including LiDAR, radio frequency, and other technologies, is being advanced to enable more precise detection and positioning systems.

6G Biomedical Breakthroughs: Non-Invasive Diagnostics Using RF Sensing

In the field of biomedicine, DISCO6G is pushing the boundaries by developing non-invasive sensing techniques. Traditional diagnostic tests, which are often invasive and time-consuming, can be revolutionized with DISCO6Gs radio frequency-based methods that detect pathogens in real-time without physical contact. This innovation has the potential to significantly speed up and simplify the process of medical diagnostics.

Impact on Various Sectors

The implications of DISCO6G are vast and varied. In transportation, the technology will enable precise train localization, speed estimation, and passenger flow control in railway and metro systems. It will also enhance cooperative detection in vehicular networks, which is pivotal for the safety in autonomous driving.

In the healthcare sector, DISCO6G will facilitate rapid virus detection methods that forego invasive tests and enable automated patient monitoring in smart hospitals. These advancements promise to improve the efficiency of medical services and patient care.

Jess Omar Lacruz of IMDEA Networks sums up the project’s vision, stating that DISCO6G is set to redefine the future of mobile networks by providing connectivity that not only enables communication but also actively perceives and interacts with the environment. This dual capability is expected to significantly enhance the safety, healthcare, and efficiency of future infrastructures, marking a new era in mobile network evolution.


Recent Content

Elon Musk’s generative AI firm, xAI, is targeting $4.3 billion in new equity funding, following its previous $6 billion raise and a $5 billion debt effort. The capital will support high-cost AI models like Grok and Aurora, expand massive GPU-powered data centers, and drive xAI’s ambition to compete with leaders like OpenAI and DeepMind. Investors remain interested despite concerns over spending, betting on Musk’s strategy to blend social media and AI under one ecosystem.
The emergence of 6G networks marks a paradigm shift in the way wireless systems are conceived and managed. Unlike its predecessors, 6G will embed Artificial Intelligence (AI) as a native capability across all network layers, enabling real-time adaptability, intelligent orchestration, and autonomous decision-making. This paper explores the symbiosis between AI and 6G, highlighting key applications such as predictive analytics, alarm correlation, and edge-native intelligence. Detailed insights into AI model selection and architecture are provided to bridge the current technical gap. Finally, the cultural and organizational changes required to realize AI-driven 6G networks are discussed. A graphical abstract is suggested to visually summarize the proposed architecture.
As the telecom world accelerates toward 5G-Advanced and sets its sights on 6G, artificial intelligence (AI) is no longer a peripheral technology — it is becoming the brain of the mobile network. AI-driven Radio Access Networks (RANs), and increasingly AI-native architectures, are reshaping how operators design, optimize, and monetize their networks. From zero-touch automation to intelligent spectrum management and edge AI services, the integration of AI and machine learning (ML) is unlocking both operational efficiencies and new business models.

This article explores the evolution of AI in the RAN, the architectural shifts needed to support it, the critical role of Open RAN, and the most promising AI use cases from the field. For telcos, this is not just a technical upgrade — it is a strategic inflection point.
ZTE and e& UAE have completed a successful Private 5G Network trial, showcasing high uplink speeds, multi-band adaptability, and ZTE’s NodeEngine Edge Computing platform. This trial enables rapid deployment, stronger enterprise connectivity, and practical use cases for smart industries, aligning with the UAE’s goal of becoming a digital innovation leader.
Spark and Air New Zealand have activated New Zealand’s first Private 5G Network for business operations at Auckland Airport’s logistics warehouse. Using Ericsson’s enterprise-grade 5G, the network powers a drone-robot system that automates stocktakes, keeps staff safer by removing the need for high-shelf manual scanning, and provides real-time inventory data to boost efficiency. This smart warehousing solution sets a new benchmark for airport logistics and supply chain innovation in New Zealand.
Deutsche Telekom, Orange, and the Linux Foundation outline their 2025 cloud-native telecom roadmap, highlighting Kubernetes-native workloads, AI integration, observability, and zero-trust security models. Learn how open-source tooling, GitOps automation, and cultural transformation are reshaping next-gen telco operations.

Currently, no free downloads are available for related categories. Search similar content to download:

  • Reset

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

Download Magazine

With Subscription

Subscribe To Our Newsletter

Private Network Awards 2025 - TeckNexus
Scroll to Top

Private Network Awards

Recognizing excellence in 5G, LTE, CBRS, and connected industries. Nominate your project and gain industry-wide recognition.
Early Bird Deadline: Sept 5, 2025 | Final Deadline: Sept 30, 2025