Beamspace transformation for data reduction using genetic algorithms

Minghui Li, K. S. Ho, G. Hayward
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引用次数: 10

Abstract

Estimation of the incident waveform directions, or direction of arrival (DOA) estimation, is an essential problem in sonar array processing. A sonar array usually consists of a large number of elements, and the associated data processing complexity is extensive. An approach to reduce the computation is to map the data from full-dimension element space into a lower dimension beam space, through a linear transformation prior to signal processing. In this paper, a new algorithm for designing beam space transformation with interference suppression is proposed. This approach optimizes in-sector estimation accuracy and out-of-sector interference rejection capabilities simultaneously and yields superior beam space DOA estimates with significantly reduced computation load.
用遗传算法进行数据约简的波束空间变换
在声纳阵处理中,入射波形方向的估计或到达方向(DOA)估计是一个关键问题。声纳阵通常由大量单元组成,相关数据处理的复杂性很大。一种减少计算量的方法是在信号处理之前通过线性变换将数据从全维元素空间映射到低维波束空间。本文提出了一种新的抗干扰波束空间变换设计算法。该方法同时优化了扇区内估计精度和扇区外干扰抑制能力,并在显著降低计算负荷的情况下产生优越的波束空间DOA估计。
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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