Wireless Communication with Flexible Reflector: Joint Placement and Rotation Optimization for Coverage Enhancement

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Main Authors: Lu, Haiquan, Yu, Zhi, Zeng, Yong, Ma, Shaodan, Jin, Shi, Zhang, Rui
Format: Preprint
Published: 2024
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_version_ 1866910859022827520
author Lu, Haiquan
Yu, Zhi
Zeng, Yong
Ma, Shaodan
Jin, Shi
Zhang, Rui
author_facet Lu, Haiquan
Yu, Zhi
Zeng, Yong
Ma, Shaodan
Jin, Shi
Zhang, Rui
contents Passive metal reflectors for communication enhancement have appealing advantages such as ultra low cost, zero energy expenditure, maintenance-free operation, long life span, and full compatibility with legacy wireless systems. To unleash the full potential of passive reflectors for wireless communications, this paper proposes a new passive reflector architecture, termed flexible reflector (FR), for enabling the flexible adjustment of beamforming direction via the FR placement and rotation optimization. We consider the multi-FR aided area coverage enhancement and aim to maximize the minimum expected receive power over all locations within the target coverage area, by jointly optimizing the placement positions and rotation angles of multiple FRs. To gain useful insights, the special case of movable reflector (MR) with fixed rotation is first studied to maximize the expected receive power at a target location, where the optimal single-MR placement positions for electrically large and small reflectors are derived in closed-form, respectively. It is shown that the reflector should be placed at the specular reflection point for electrically large reflector. While for area coverage enhancement, the optimal placement is obtained for the single-MR case and a sequential placement algorithm is proposed for the multi-MR case. Moreover, for the general case of FR, joint placement and rotation design is considered for the single-/multi-FR aided coverage enhancement, respectively. Numerical results are presented which demonstrate significant performance gains of FRs over various benchmark schemes under different practical setups in terms of receive power enhancement.
format Preprint
id arxiv_https___arxiv_org_abs_2412_18817
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Wireless Communication with Flexible Reflector: Joint Placement and Rotation Optimization for Coverage Enhancement
Lu, Haiquan
Yu, Zhi
Zeng, Yong
Ma, Shaodan
Jin, Shi
Zhang, Rui
Information Theory
Signal Processing
Passive metal reflectors for communication enhancement have appealing advantages such as ultra low cost, zero energy expenditure, maintenance-free operation, long life span, and full compatibility with legacy wireless systems. To unleash the full potential of passive reflectors for wireless communications, this paper proposes a new passive reflector architecture, termed flexible reflector (FR), for enabling the flexible adjustment of beamforming direction via the FR placement and rotation optimization. We consider the multi-FR aided area coverage enhancement and aim to maximize the minimum expected receive power over all locations within the target coverage area, by jointly optimizing the placement positions and rotation angles of multiple FRs. To gain useful insights, the special case of movable reflector (MR) with fixed rotation is first studied to maximize the expected receive power at a target location, where the optimal single-MR placement positions for electrically large and small reflectors are derived in closed-form, respectively. It is shown that the reflector should be placed at the specular reflection point for electrically large reflector. While for area coverage enhancement, the optimal placement is obtained for the single-MR case and a sequential placement algorithm is proposed for the multi-MR case. Moreover, for the general case of FR, joint placement and rotation design is considered for the single-/multi-FR aided coverage enhancement, respectively. Numerical results are presented which demonstrate significant performance gains of FRs over various benchmark schemes under different practical setups in terms of receive power enhancement.
title Wireless Communication with Flexible Reflector: Joint Placement and Rotation Optimization for Coverage Enhancement
topic Information Theory
Signal Processing
url https://arxiv.org/abs/2412.18817