Beamforming Design for Double-Active-RIS-aided Communication Systems with Inter-Excitation
Boshi Wang, Cunhua Pan, Hong Ren, Zhiyuan Yu, Yang Zhang, Mengyu Liu,, Gui Zhou

TL;DR
This paper proposes a novel beamforming design for double-active-RIS-assisted wireless systems, addressing the inter-excitation effect, and demonstrates significant performance improvements over existing schemes through optimization and simulation.
Contribution
It introduces a feedback-based signal model for inter-excitation in double-active-RIS systems and develops an optimization framework to maximize weighted sum rate considering practical constraints.
Findings
Proposed scheme outperforms benchmarks in achievable rate.
Achieves up to 30% WSR improvement with 40 dB gain.
Effective deployment of double active RISs enhances system flexibility.
Abstract
In this paper, we investigate a double-active-reconfigurable intelligent surface (RIS)-aided downlink wireless communication system, where a multi-antenna base station (BS) serves multiple single-antenna users with both double reflection and single reflection links. Due to the signal amplification capability of active RISs, they can effectively mitigate the multiplicative fading effect. However, this also induces signal bouncing between the two active RISs that cannot be ignored. This phenomenon is termed as the "inter-excitation" effect and is characterized in the received signal by proposing a feedback-type model. Based on the signal model, we formulate a weighted sum rate (WSR) maximization problem by jointly optimizing the beamforming matrix at the BS and the reflecting coefficient matrices at the two active RISs, subject to power constraints at the BS and active RISs, as well as…
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Taxonomy
TopicsAntenna Design and Analysis · Antenna Design and Optimization · Wireless Body Area Networks
MethodsBalanced Selection
