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Real-Valued MUSIC for Efficient Direction Estimation With Arbitrary Array Geometries

机译:实值 MUSIC,用于使用任意阵列几何形状进行高效方向估计

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摘要

Most of the existing methods for direction-of-arrival (DOA) estimation are based on numerical characteristics behind the entire array output covariance matrix (AOCM). Since the AOCM is generally a complex matrix, those approaches require tremendous complex computations accordingly. This paper addresses the problem of DOA estimation with real-valued computations by considering the real part of AOCM (R-AOCM) and the imaginary part of AOCM (I-AOCM) separately. It is shown that the null space of R-AOCM and that of I-AOCM are the same subspace, which coincides with the intersection of the original noise subspace and its conjugate subspace. Using such a mathematical fact, a novel real-valued MUSIC (RV-MUSIC) estimator with a real-valued subspace decomposition on only R-ACOM (or I-AOCM) instead of the entire ACOM is derived. Compared with most state-of-the-art unitary algorithms suitable for only centro-symmetric arrays (CSAs), the proposed technique can be used with arbitrary array geometries. Unlike conventional MUSIC with exhaustive spectral search, RV-MUSIC involves a limited search over only half of the total angular field-of-view with a real-valued noise subspace, and hence reduces the complexity by 75. Theoretical performance analysis on the mean square error (MSE) and numerical simulations demonstrate that RV-MUSIC shows a very close accuracy to the standard MUSIC.
机译:现有的到达方向(DOA)估计方法大多基于整个阵列输出协方差矩阵(AOCM)背后的数值特征。由于AOCM通常是一个复杂的矩阵,因此这些方法需要大量复杂的计算。该文通过分别考虑AOCM(R-AOCM)的实部和AOCM(I-AOCM)的虚部,解决了使用实值计算计算的DOA估计问题。结果表明,R-AOCM的零空间与I-AOCM的零空间是同一子空间,与原始噪声子空间与其共轭子空间的交点相吻合。利用这样的数学事实,推导了一种新的实值MUSIC(RV-MUSIC)估计器,该估计器仅在R-ACOM(或I-AOCM)上而不是整个ACOM上进行了实值子空间分解。与大多数仅适用于中心对称阵列 (CSA) 的最先进的酉算法相比,所提出的技术可用于任意阵列几何形状。与具有详尽光谱搜索的传统MUSIC不同,RV-MUSIC仅涉及使用实值噪声子空间对总角视场的一半进行有限搜索,因此将复杂度降低了75%。均方误差(MSE)的理论性能分析和数值模拟表明,RV-MUSIC的精度与标准MUSIC非常接近。

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