An Improved Doa Estimator Based on Partial Relaxation Approach

Minh Trinh-Hoang, M. Viberg, M. Pesavento
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引用次数: 11

Abstract

In the partial relaxation approach, at each desired direction, the manifold structure of the remaining interfering signals impinging on the sensor array is relaxed, which results in closed form estimates for the interference parameters. By adopting this approach, in this paper, a new estimator based on the unconstrained covariance fitting problem is proposed. To obtain the null-spectra efficiently, an iterative rooting scheme based on the rational function approximation is applied. Simulation results show that the performance of the proposed estimator is superior to the classical and other partial relaxation methods, especially in the case of low number of snapshots, irrespectively of any specific structure of the sensor array while maintaining a reasonable computational cost.
基于部分松弛法的改进Doa估计方法
在部分松弛方法中,在每个期望的方向上,剩余干扰信号的流形结构被松弛,从而得到干扰参数的封闭估计。利用这种方法,本文提出了一种新的基于无约束协方差拟合问题的估计量。为了有效地获得零谱,采用了一种基于有理函数近似的迭代生根格式。仿真结果表明,该估计方法的性能优于传统的部分松弛方法,特别是在快照数量较少的情况下,与传感器阵列的任何特定结构无关,同时保持合理的计算成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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