A homotopy continuation approach for self-calibration of arrays with general phase perturbations

G. Brown, J. H. McClellan, E. J. Holder
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引用次数: 5

Abstract

An eigenstructure approach is presented for array processing with imperfect sensors. Each sensor is modeled as having an unknown angularly dependent phase error with ideal gain. The proposed technique is capable of compensating for sensor location error, unknown sensor phase patterns, and various types of environmental inhomogeneities. The algorithm can be used in self-calibration applications since the sensor perturbations are estimated in addition to angle of arrival of the sources. Based on the method of homotopy continuation it will find all solutions for the minimum. Since the algorithm is computationally intensive, a sub-optimal less intensive approach is also provided.<>
具有一般相位扰动的阵列自标定的同伦延拓方法
提出了一种不完全传感器阵列处理的特征结构方法。每个传感器都被建模为具有未知的角相关相位误差和理想增益。该技术能够补偿传感器定位误差、未知传感器相位模式和各种类型的环境不均匀性。该算法可用于自校准应用,因为除了源的到达角外,还估计了传感器的扰动。基于同伦延拓方法,求出最小值的所有解。由于该算法是计算密集型的,因此还提供了一种次优的非密集方法。
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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