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中文核心期刊

稀疏阵列设计研究综述

A review of research on sparse array design technology

  • 摘要: 基于稀疏恢复理论的阵列设计方法, 因能够在保证波束方向图分辨率与旁瓣性能的前提下, 以更少的阵元实现高精度波束综合, 同时降低互耦效应与系统成本, 而受到广泛关注。本文系统综述了稀疏直线阵列设计的代表方法, 并将其分为两类: (i)基于规则网格的稀疏阵列设计, 包括离网格稀疏阵列设计方法; (ii)基于无网格的稀疏阵列设计方法。从数学模型、优化算法及性能分析三个角度, 针对单方向图和多方向图两种设计场景中最具代表性的算法进行了详细介绍, 并展示了不同方法在多种参考阵列、阵元约束及波束要求下的性能表现。最后, 讨论了稀疏阵列设计中存在的开放性问题与未来值得关注的研究方向。

     

    Abstract: Array design methods based on sparse optimization theory have attracted widespread attention because they can achieve high-precision beam pattern synthesis with fewer array elements while maintaining beam pattern resolution and sidelobe performance, as well as reducing mutual coupling effects and system costs. This paper provides a comprehensive overview of mainstream sparse linear array design methods and categorizes them into two classes: (i) grid-based sparse array design, including off-grid sparse array design methods; (ii) gridless sparse array design methods. From the perspectives of mathematical models, optimization algorithms, and performance analysis, the most representative algorithms for both single-pattern and multi-pattern design scenarios are introduced in detail, and the performance of different methods under various reference arrays, element constraints, and beam requirements is demonstrated. Finally, open problems in sparse array design and promising directions for future research are discussed.

     

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