Analog–digital precoding based on mutual coupling considering the actual radiation performance of MIMO antenna arrays

IF 3.6 2区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC Signal Processing Pub Date : 2025-02-08 DOI:10.1016/j.sigpro.2025.109932
Jianchuan Wei , Xiaoming Chen , Ruihai Chen , Chongwen Huang , Xiaoyu Huang , Wei E.I. Sha , Mérouane Debbah
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Abstract

Mutual coupling among antenna array elements can have impacts on not only the elements’ mutual impedance but also the radiation characteristics, which is usually not considered appropriately in previous precoding researches. In this paper, an analog–digital precoding scheme based on mutual coupling is proposed considering the actual radiation performance of multiple-input multiple-output antenna arrays. Instead of reducing or eliminating the mutual coupling effect as in the conventional approach, this paper focuses on exploiting it to improve the system performance. Open-circuit radiation pattern is firstly introduced in the system model to further evaluate the effect of mutual coupling on the antenna radiation performance. Conventional linear precoding is applied in the digital domain. As for the analog domain, to minimize the noise amplification factor and thus maximize the receive signal-to-noise ratio of the system through exploiting the mutual coupling effect, the proper load impedances and antenna weighting coefficients are selected by convex optimization and Newton method. Simulation results show that the proposed scheme performs significantly better than the conventional one without mutual coupling in zero forcing and minimum mean square error systems. Besides, greater performance gain in MIMO systems with smaller antenna spacing, higher dimensionality and larger apparent power are observed.
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考虑MIMO天线阵列实际辐射性能的互耦合模数预编码
天线阵元间的相互耦合不仅会影响元间的相互阻抗,还会影响天线阵元间的辐射特性,这在以往的预编码研究中往往没有得到充分的考虑。考虑到多输入多输出天线阵列的实际辐射性能,提出了一种基于互耦合的模数预编码方案。本文的重点是利用互耦效应来提高系统性能,而不是像传统方法那样减少或消除互耦效应。首先在系统模型中引入开路辐射方向图,进一步评估互耦对天线辐射性能的影响。传统的线性预编码应用于数字域。在模拟域,为了利用互耦效应使噪声放大系数最小化,从而使系统接收信噪比最大化,采用凸优化和牛顿法选择合适的负载阻抗和天线加权系数。仿真结果表明,该方案在零强迫和最小均方误差系统中的性能明显优于无相互耦合的传统方案。此外,天线间距越小、维数越高、视在功率越大,MIMO系统的性能增益越大。
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来源期刊
Signal Processing
Signal Processing 工程技术-工程:电子与电气
CiteScore
9.20
自引率
9.10%
发文量
309
审稿时长
41 days
期刊介绍: Signal Processing incorporates all aspects of the theory and practice of signal processing. It features original research work, tutorial and review articles, and accounts of practical developments. It is intended for a rapid dissemination of knowledge and experience to engineers and scientists working in the research, development or practical application of signal processing. Subject areas covered by the journal include: Signal Theory; Stochastic Processes; Detection and Estimation; Spectral Analysis; Filtering; Signal Processing Systems; Software Developments; Image Processing; Pattern Recognition; Optical Signal Processing; Digital Signal Processing; Multi-dimensional Signal Processing; Communication Signal Processing; Biomedical Signal Processing; Geophysical and Astrophysical Signal Processing; Earth Resources Signal Processing; Acoustic and Vibration Signal Processing; Data Processing; Remote Sensing; Signal Processing Technology; Radar Signal Processing; Sonar Signal Processing; Industrial Applications; New Applications.
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