The Road to 6G: Queen’s University Belfast – July 2021 The Road to 6G: Ten Physical Layer Challenges for Communications…
Compressive Imaging – Queen’s University Belfast Development of innovative imaging technologies has been at the forefront of the research conducted…
Disruptive Beamforming Trends – 4. QUB White Paper In response to the challenges of designing 5G-ready beamformer hardware at mmWave…
Disruptive Beamforming Trends – 3. QUB White paper In response to the challenges of designing 5G-ready beamformer hardware at mmWave…
Disruptive Beamforming Trends – 2 Improving mmWave 5G – Challenges Following on from the article in November 2020. In response…
Disruptive Beamforming Trends Improving mmWave 5G 5G is now a reality and the first stage of its infrastructure (sub-6 GHz)…
Ubiquitous cell-free Massive MIMO communications Since the first cellular networks were trialled in the 1970s, we have witnessed an incredible…
The Influence of Elevation Angle on 60 GHz Near-Body Path Gain The currently under-utilised millimetre-wave (mm-Wave) bands are being considered as…
Constant–er Lens Beamformer for Low Complexity Millimetre–Wave Hybrid MIMO The utilization of unused millimetre–wave (mmWave) spectrum is inevitable, due to…
Performance of a 28 GHz Two–Stage Rotman Lens Beamformer for Millimeter Wave Cellular Systems Phase shifter–based hybrid beamforming has received…
Massive MIMO: Multi-way relaying has become one of the most promising technologies for next generation wireless systems (5G+), for its…
The research by Dr Abbasi and colleagues at the Centre for Wireless Innovation, Queen’s University Belfast, demonstrates the sensitivity of…
We consider a multi-way decode-and-forward (DF) relaying network with very large antenna arrays at the relay station. In this system, each user…
The performance of cellular networks is typically limited by inter-cell interference. In particular, users close to the cell boundaries suffer…