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Search-free decentralized direction-of-arrival estimation using common roots for non-coherent partly calibrated arrays

机译:非相干部分校准的阵列使用公共根的免搜索分散式到达方向估计

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We consider decentralized direction-of-arrival (DoA) estimation for large partly calibrated arrays composed of multiple fully calibrated uniform linear subarrays. Due to the difficulty of maintaining coherence between signals received in widely separated subarrays, the practical case of non-coherent subar-rays is investigated. Our novel approach for decentralized and non-coherent DoA estimation is based on finding the common roots (CRs) of multiple univariate polynomials corresponding to individual subarrays. We propose two algorithms using generalized Sylvester matrix to find the CRs and to estimate the DoAs. The proposed algorithms substantially reduce communication and computation costs compared to traditional centralized DoA estimation methods. Moreover, simulation results demonstrate that our algorithms outperform existing decentralized methods and can deal with possible DoA estimation ambiguities caused by subarray geometries.
机译:我们考虑分散的到达方向(DOA)估计,用于多个完全校准的均匀线性子阵列组成的大部分校准阵列。由于难以保持在广泛分离的子阵列中的信号之间的相干性,研究了非相干子射线的实际情况。我们的分散和非相干DOA估计的新方法是基于找到对应于各个子阵列的多个单变量多项式的常见根(CRS)。我们提出了两个使用广义的Sylvester矩阵的两种算法来找到CRS并估计DOA。与传统的集中式DOA估计方法相比,所提出的算法大大降低了通信和计算成本。此外,仿真结果表明,我们的算法优于现有的分散方法,并可以处理由子阵列几何形状引起的可能的DOA估计含糊不清。

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