activity
20242026
collaborators

18 papers

eess.SP2026

Multi-Hop RIS ISAC for Target Positioning: A Tensor Decomposition-based Approach

Yirui Luo, Xiaoyan Ma, Yong Liang Guan +2

Reconfigurable intelligent surface (RIS) has demon- strated remarkable potential to enhance the performance of integrated sensing and communication (ISAC), particularly when the li…

cs.IT2026

Harnessing Rydberg Atomic Receivers: From Quantum Physics to Wireless Communications

Yuanbin Chen, Xufeng Guo, Chau Yuen +5

The intrinsic integration of Rydberg atomic receivers into wireless communication systems is proposed, by harnessing the principles of quantum physics in wireless communications. M…

cs.IT2026

Two-Stage Coded-Sliding Beam Training and QoS-Constrained Sum-Rate Maximization for SIM-Assisted Wireless Communications

Qian Zhang, Ju Liu, Yao Ge +5

Stacked intelligent metasurfaces (SIM) provide a cost-effective and scalable solution for large-scale antenna communications.However, efficient channel state information acquisitio…

eess.SP2026

Antenna Elements' Trajectory Optimization for Throughput Maximization in Continuous-Trajectory Fluid Antenna-Aided Wireless Communications

Shuaixin Yang, Yijia Li, Yue Xiao +4

Fluid antenna (FA) systems offer novel spatial degrees of freedom (DoFs) with the potential for significant performance gains. Compared to existing works focusing solely on optimiz…

cs.IT2026

Cramér-Rao Bound Minimization for Flexible Intelligent Metasurface-Enabled ISAC Systems

Qian Zhang, Yufei Zhao, Jiancheng An +4

Integrated sensing and communication (ISAC) have been widely recognized as a key enabler for future wireless networks, where the Cramér-Rao bound (CRB) plays a central role in qua…

eess.SP2026

Rydberg Atomic Quantum Receivers for Classical Wireless Communications and Sensing: Their Models and Performance

Tierui Gong, Jiaming Sun, Chau Yuen +6

The significant progress of quantum sensing technologies offer numerous radical solutions for measuring a multitude of physical quantities at an unprecedented precision. Among them…