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Transmissive RIS Transceiver Enabled Multistream Communication Systems: Design, Optimization, and Analysis

delete2025-03-01
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PRE
AI
Z
Zhendong Li
陈伟 cover
陈伟 (Wen Chen) *
X
Xusheng Zhu
Q
Qingqing Wu
倪刚 cover
倪刚 (Gang Ni)
S
Shanshan Zhang
李俊 (Jun Li)
DOI:10.1109/JIOT.2024.3488799delete
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Abstract

Abstract

En 中文
In this article, a novel multistream downlink communication system based on the transmissive reconfigurable intelligent surface (RIS) transceiver is proposed. Specifically, a transmissive RIS transceiver architecture is first elaborated, where the downlink communication mechanism and the difference from the conventional multiantenna transceivers are introduced, respectively. More importantly, the generation of RIS element control signals based on time-modulated array (TMA) is illustrated in detail, which can jointly take into account multistream modulation signals and beamforming design. Correspondingly, the harmonic signal extraction scheme at the user is also given. Then, since the design of beamforming has an impact on the system performance, we propose a beamforming optimization algorithm based on matrix lifting, successive convex approximation (SCA) and difference-convex (DC) programming under the constraints of user signal-to-interference-plus-noise ratio (SINR) and available useful power of RIS elements. Furthermore, we analyze the bit error rate (BER) performance of the proposed architecture from two perspectives of transmit multiplexing and transmit diversity. Finally, the convergence behavior of the beamforming algorithm, the impact of different system parameter configurations on system performance and the BER performance of different schemes under the system are verified by numerical simulations.
Keywords:
Transceivers
Array signal processing
Reconfigurable intelligent surfaces
Downlink
Computer architecture
Bit error rate
Transmitting antennas
Optimization
Communication networks
Power demand
Beamforming optimization
diversity
multiplexing
time-modulated array (TMA)
transmissive reconfigurable intelligent surface (RIS) transceiver

Journal

IEEE Internet of Things Journal cover
IEEE Internet of Things Journal
IF:
8.9
Papers:
1.4W
Citations:
7.8W

Organization

S
shanghai jiao tong university
Scholars:
15.6W
Papers: 11.6W
Citations: 159
S
southeast university - china
Scholars:
5.3W
Papers: 4.9W
Citations: 57