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Main Authors: Hui, Yingzhe, Chen, Shuyi, Qin, Yifan, Meng, Weixiao, Zhang, Qiushi, Jin, Wei
Format: Preprint
Published: 2024
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Online Access:https://arxiv.org/abs/2408.09132
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author Hui, Yingzhe
Chen, Shuyi
Qin, Yifan
Meng, Weixiao
Zhang, Qiushi
Jin, Wei
author_facet Hui, Yingzhe
Chen, Shuyi
Qin, Yifan
Meng, Weixiao
Zhang, Qiushi
Jin, Wei
contents Reconfigurable Intelligent Surfaces (RIS) are programmable metasurfaces utilizing sub-wavelength meta-atoms and a controller for precise electromagnetic wave manipulation. This work introduces an innovative channel coding scheme, termed RIS-based diffractional channel coding (DCC), which capitalizes on diffraction between two RIS layers for signal-level encoding. Contrary to traditional methods, DCC expands signal dimensions through diffraction, presenting a novel countermeasure to channel effects. This paper focuses on the operational principles of DCC, including encoder and decoder designs, and explores its possibilities to construct block and trellis codes, demonstrating its potential as both an alternative and a supplementary conventional coding scheme. Key advantages of DCC include eliminating extra power requirements for encoding, achieving computation at the speed of light, and enabling adjustable code distance, making it a progressive solution for efficient wireless communication, particularly in systems with large-scale data or massive MIMO.
format Preprint
id arxiv_https___arxiv_org_abs_2408_09132
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle RIS-based Over-the-air Diffractional Channel Coding
Hui, Yingzhe
Chen, Shuyi
Qin, Yifan
Meng, Weixiao
Zhang, Qiushi
Jin, Wei
Signal Processing
Reconfigurable Intelligent Surfaces (RIS) are programmable metasurfaces utilizing sub-wavelength meta-atoms and a controller for precise electromagnetic wave manipulation. This work introduces an innovative channel coding scheme, termed RIS-based diffractional channel coding (DCC), which capitalizes on diffraction between two RIS layers for signal-level encoding. Contrary to traditional methods, DCC expands signal dimensions through diffraction, presenting a novel countermeasure to channel effects. This paper focuses on the operational principles of DCC, including encoder and decoder designs, and explores its possibilities to construct block and trellis codes, demonstrating its potential as both an alternative and a supplementary conventional coding scheme. Key advantages of DCC include eliminating extra power requirements for encoding, achieving computation at the speed of light, and enabling adjustable code distance, making it a progressive solution for efficient wireless communication, particularly in systems with large-scale data or massive MIMO.
title RIS-based Over-the-air Diffractional Channel Coding
topic Signal Processing
url https://arxiv.org/abs/2408.09132