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Main Authors: Zong, Xiaocun, Zhang, Binchao, Yang, Fan, Xu, Shenheng, Li, Maokun
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2410.14261
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author Zong, Xiaocun
Zhang, Binchao
Yang, Fan
Xu, Shenheng
Li, Maokun
author_facet Zong, Xiaocun
Zhang, Binchao
Yang, Fan
Xu, Shenheng
Li, Maokun
contents This paper analyzes the working principle of four-switch cross-shaped reconfigurable intelligent surface (RIS) in detail and reveals the different types of RIS that can be designed based on this structure. Combined with the design examples using this structure in the currently published articles, this paper summarizes and organizes them, and also points out several RIS solutions that have not been designed using this structure. Finally, based on this four-switch cross-shaped structure, this paper proposes a novel RIS design example that can realize the function switching of 1-bit ultra-wideband (UWB) and 2-bit narrowband, and conducts simulation verification. The simulation results show that by optimizing the element structure and controlling the states of the four switches, the 1-bit ultra-wideband function can achieve a frequency band coverage of 10.5GHz-19.8GHz and a 2-bit phase quantization function around 18.12GHz. At the same time, it can realize 60° two-dimensional beam scanning function. We call this novel design "bit reconfigurable metasurface".
format Preprint
id arxiv_https___arxiv_org_abs_2410_14261
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A Study of Four-Switch Cross-Shaped RIS and A Novel Design Example
Zong, Xiaocun
Zhang, Binchao
Yang, Fan
Xu, Shenheng
Li, Maokun
Applied Physics
This paper analyzes the working principle of four-switch cross-shaped reconfigurable intelligent surface (RIS) in detail and reveals the different types of RIS that can be designed based on this structure. Combined with the design examples using this structure in the currently published articles, this paper summarizes and organizes them, and also points out several RIS solutions that have not been designed using this structure. Finally, based on this four-switch cross-shaped structure, this paper proposes a novel RIS design example that can realize the function switching of 1-bit ultra-wideband (UWB) and 2-bit narrowband, and conducts simulation verification. The simulation results show that by optimizing the element structure and controlling the states of the four switches, the 1-bit ultra-wideband function can achieve a frequency band coverage of 10.5GHz-19.8GHz and a 2-bit phase quantization function around 18.12GHz. At the same time, it can realize 60° two-dimensional beam scanning function. We call this novel design "bit reconfigurable metasurface".
title A Study of Four-Switch Cross-Shaped RIS and A Novel Design Example
topic Applied Physics
url https://arxiv.org/abs/2410.14261