C5 Room

Network of Networks

C5 supports the U floor with communication technologies for human learning and skill transfer with COTS and CeTI2 technologies. Low-cost solutions are considered to boost the democratisation idea of CeTI2.

Key Questions

This question investigates how to manage and synchronize various communication technologies in real-time to ensure optimal performance across different applications.

This explores how to adapt the system’s prioritization of sensory inputs (e.g., visual vs. haptic feedback) in real-time, based on context and user needs.

This looks at how emerging technologies like quantum communication and molecular transmission can improve latency, reliability, and sensory experience in future communication networks.

Approach

AI-driven systems for real-time optimization, dynamic scheduling, and advanced communication technologies.

Expected Results

Robust, low-latency communication systems with seamless integration across platforms.

Our Latest Research Results

  • Revolutionary Neural Learning Unit Accelerates On-Device AI Training While Cutting Energy Consumption

    Whether it is a robotic arm in an automated factory, an autonomous vehicle navigating a warehouse, or haptic gloves in virtual reality—precise real-time orientation tracking is essential. A new study ...

  • When Biology Meets Engineering – Controlling Physical Systems with Living Neural Networks

    Could the future of computing be biological? As we look beyond traditional silicon chips for more adaptive and energy-efficient solutions, a fascinating question arises: Can we use Synthetic Biologic ...

  • Revolutionizing 5G for Mission-Critical Applications – A New Era of Reliability and Low Latency

    As 5G and future cellular networks evolve to support critical real-time applications like telesurgery, remote robotics, and autonomous driving, balancing extreme reliability with ultra-low latency be ...