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Perturbation analysis of conjugate MI-ESPRIT for single acoustic vector-sensor-based noncircular signal direction finding

机译:基于单声矢量传感器的非圆形信号测向的共轭MI-ESPRIT摄动分析

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摘要

The closed-form conjugate multiple-invariance ESPRIT (CMI-ESPRIT) algorithm herein analyzed: (1) makes use of redundancy in the nonvanishing conjugated second- and fourth-order cumulants of noncircular signals; (2) recognizes the real-valued two-dimensional directivity inherently achieved by an acoustic vector-sensor in a free-space. It is provided in this correspondence the perturbation analyses on both the norm-penalized and the subspace-constraint ESPRIT matrices that play the key role in the CMI-ESPRIT. It is shown that the norm-penalized ESPRIT matrix is biased (but bounded) and has a minimal mean-squared-error (MSE) for some finite regularization factor, whereas the subspace-constraint ESPRIT matrix is unbiased and its MSE approaches minimum when the regularization factor becomes infinite. These observations are potentially useful for the determination of the regularization parameters which is significant for the performance of CMI-ESPRIT. The results also contribute to the ultimate study of direction-finding accuracy. Simulation results are presented to validate the given analyses.
机译:本文分析的闭式共轭多重不变ESPRIT(CMI-ESPRIT)算法:(1)在非消失信号的非圆形共轭二阶和四阶累积量中利用了冗余; (2)识别在自由空间中由声学矢量传感器固有实现的实值二维方向性。在此对应关系中提供了对在CMI-ESPRIT中起关键作用的范数罚分和子空间约束的ESPRIT矩阵的扰动分析。结果表明,范数罚分的ESPRIT矩阵是有偏的(但有界),并且对于某些有限的正则化因子具有最小的均方误差(MSE),而子空间约束的ESPRIT矩阵是无偏的,并且当正则化因子变为无限。这些观察对于确定正则化参数可能很有用,这对于CMI-ESPRIT的性能很重要。这些结果也有助于最终研究方向精确度。给出了仿真结果以验证给定的分析。

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