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Hauptverfasser: Jiang, Yutong, Ge, Hangyu, Wang, Bi-Ying, Yuan, Shuai S. A., Pan, Shi-Jie, Xu, Hongjing, Cui, Xiaopeng, Yung, Man-Hong, Liu, Feng, Sha, Wei E. I.
Format: Preprint
Veröffentlicht: 2024
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Online-Zugang:https://arxiv.org/abs/2409.19938
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author Jiang, Yutong
Ge, Hangyu
Wang, Bi-Ying
Yuan, Shuai S. A.
Pan, Shi-Jie
Xu, Hongjing
Cui, Xiaopeng
Yung, Man-Hong
Liu, Feng
Sha, Wei E. I.
author_facet Jiang, Yutong
Ge, Hangyu
Wang, Bi-Ying
Yuan, Shuai S. A.
Pan, Shi-Jie
Xu, Hongjing
Cui, Xiaopeng
Yung, Man-Hong
Liu, Feng
Sha, Wei E. I.
contents This paper introduces an innovative quantum-inspired method for beamforming (BF) optimization in multiple-input multiple-output (MIMO) arrays. The method leverages the simulated bifurcation (SB) algorithm to address the complex combinatorial optimization problem due to the quantized phase configuration. We propose novel encoding techniques for high-bit phase quantization, which are then mapped into Ising spins. This enables efficient construction of the Hamiltonians and subsequent optimization of BF patterns. The results clearly demonstrate that the SB optimizer surpasses traditional schemes such as digital BF, holographic algorithms and genetic algorithms, offering faster convergence and higher solution quality. The impressive capability of the SB optimizer to handle complex BF scenarios, including sidelobe suppression and multiple beams with nulls, is undoubtedly demonstrated through several application cases. These findings strongly suggest that quantum-inspired methods have great potential to advance MIMO techniques in next-generation wireless communication.
format Preprint
id arxiv_https___arxiv_org_abs_2409_19938
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Quantum-inspired Beamforming Optimization for Quantized Phase-only Massive MIMO Arrays
Jiang, Yutong
Ge, Hangyu
Wang, Bi-Ying
Yuan, Shuai S. A.
Pan, Shi-Jie
Xu, Hongjing
Cui, Xiaopeng
Yung, Man-Hong
Liu, Feng
Sha, Wei E. I.
Applied Physics
This paper introduces an innovative quantum-inspired method for beamforming (BF) optimization in multiple-input multiple-output (MIMO) arrays. The method leverages the simulated bifurcation (SB) algorithm to address the complex combinatorial optimization problem due to the quantized phase configuration. We propose novel encoding techniques for high-bit phase quantization, which are then mapped into Ising spins. This enables efficient construction of the Hamiltonians and subsequent optimization of BF patterns. The results clearly demonstrate that the SB optimizer surpasses traditional schemes such as digital BF, holographic algorithms and genetic algorithms, offering faster convergence and higher solution quality. The impressive capability of the SB optimizer to handle complex BF scenarios, including sidelobe suppression and multiple beams with nulls, is undoubtedly demonstrated through several application cases. These findings strongly suggest that quantum-inspired methods have great potential to advance MIMO techniques in next-generation wireless communication.
title Quantum-inspired Beamforming Optimization for Quantized Phase-only Massive MIMO Arrays
topic Applied Physics
url https://arxiv.org/abs/2409.19938