How Much Time is Required for Phase Shift Delivery in RIS-Aided Wireless Systems?
Hao Xie, Dong Li

TL;DR
This paper investigates the phase shift delivery overhead in RIS-aided wireless systems, proposing a hybrid phase shift mechanism and an optimization algorithm to balance throughput and overhead effectively.
Contribution
It introduces a hybrid phase shift mechanism and an iterative optimization algorithm to reduce phase delivery overhead while maximizing throughput in RIS systems.
Findings
The hybrid phase shift approach reduces phase delivery overhead.
The proposed algorithm improves throughput-overhead trade-off.
Derived a closed-form expression for the number of coherent phase shifts.
Abstract
Reconfigurable intelligent surface (RIS) has become a focal point of extensive research due to its remarkable "squared gain". However, achieving a substantial beamforming gain typically requires a significant number of elements, which leads to a non-negligible overhead that forwards the coherent phase shift to the RIS. Different from previous works, which primarily focus on the information transmission phase, we consider the phase delivery overhead during the phase-shift delivery phase to explore the trade-off between performance and overhead. To reduce the phase delivery overhead via the control link, we introduce a hybrid phase shift mechanism, encompassing both the coherent and fixed phase shifts. Specifically, a beamforming problem is formulated for maximizing the throughput. In light of the intractability of the problem, we develop an alternating optimization-based iterative…
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Taxonomy
TopicsAdvanced Wireless Communication Technologies · Advanced Antenna and Metasurface Technologies · Underwater Vehicles and Communication Systems
