Integer-Based Pattern Synthesis for Asymmetric Multi-Reflection RIS

Fuente: arXiv
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Main Authors: Wang, Wei, Doufexi, Angela, Beach, Mark A
Format: Preprint
Published: 2023
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author Wang, Wei
Doufexi, Angela
Beach, Mark A
author_facet Wang, Wei
Doufexi, Angela
Beach, Mark A
contents This study delves into the radiation pattern synthesis of reconfigurable intelligent surfaces (RIS) / reflection metasurfaces. Through superimposing multiple single-reflection profiles, which comprise the amplitude and/or phase settings of all constituent elements, a single incident wave can be effectively reflected in multiple asymmetric directions. However, some mismatch and interference between adjacent reflection beams may be caused by this superposition as well. Additionally, it is constrained by the inherent limitation that achieving linear and continuous amplitude adjustments and phase shifts in real-world designs is challenging. Consequently, the reconfigurable amplitude and phase must be approximated to discrete values, necessitating the arrangement of reflection profile before and after optimization based on integer. Therefore, in this paper, we adapt the traditional particle swarm optimization (PSO) algorithm to discretized integer-based PSO by proposing the concepts of 'discard rate' and 'knowledge.' With the enhancement of the integer-based programming, the multiple asymmetric reflection pattern can be synthesized with suppressed sidelobe levels within limited iterations and time cost.
format Preprint
id arxiv_https___arxiv_org_abs_2312_17384
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Integer-Based Pattern Synthesis for Asymmetric Multi-Reflection RIS
Wang, Wei
Doufexi, Angela
Beach, Mark A
Signal Processing
This study delves into the radiation pattern synthesis of reconfigurable intelligent surfaces (RIS) / reflection metasurfaces. Through superimposing multiple single-reflection profiles, which comprise the amplitude and/or phase settings of all constituent elements, a single incident wave can be effectively reflected in multiple asymmetric directions. However, some mismatch and interference between adjacent reflection beams may be caused by this superposition as well. Additionally, it is constrained by the inherent limitation that achieving linear and continuous amplitude adjustments and phase shifts in real-world designs is challenging. Consequently, the reconfigurable amplitude and phase must be approximated to discrete values, necessitating the arrangement of reflection profile before and after optimization based on integer. Therefore, in this paper, we adapt the traditional particle swarm optimization (PSO) algorithm to discretized integer-based PSO by proposing the concepts of 'discard rate' and 'knowledge.' With the enhancement of the integer-based programming, the multiple asymmetric reflection pattern can be synthesized with suppressed sidelobe levels within limited iterations and time cost.
title Integer-Based Pattern Synthesis for Asymmetric Multi-Reflection RIS
topic Signal Processing
url https://arxiv.org/abs/2312.17384