随机多模信道中的大阵列波束形成和增益:基本物理方面和性能估计

A. Malekhanov, A. Smirnov
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引用次数: 2

摘要

随机非均匀环境下大阵列波束形成和信号处理的一个固有问题是空间相干性的显著降低。这种情况在许多应用中都有出现,而水下声道中以远程声传播为重点的阵列操作是最典型的情况之一。这里的另一个关键问题是所需信号的多模传播(通常是噪声干扰),因此即使对于单点源,接收场的空间频谱也由许多谐波组成。在本文中,我们的重点是在数值上证明在大阵列输入下的多模信号相干性退化,包括水下通道中的水平和垂直阵列,并预测相干性对输出性能的影响,包括阵列波束方向图和增益。由于实际海洋信道中环境噪声的特殊特性,垂直阵列的操作被强调为这里最有趣的问题。一个重要的结论是,不仅信号相干性,而且信号在模式域的局部化与环境噪声的比较共同影响阵列的输出性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Large-array beamforming and gain in random multimode channels: Basic physical aspects and performance estimations
An intrinsic issue of large-array beamforming and signal processing in random-inhomogeneous environments is known to be considerable degradation of signal coherence in space domain. Such a scenario arises in many applications, and array operations in underwater sound channels with emphasis on long-range sound propagation is one of the most typical cases. Another key issue is here the multimode propagation of the desired signal (and, generally, noise interference) so the spatial spectrum of the received field consists of numerous harmonics even for a single point source. In this paper, our focus is to demonstrate numerically the multimode signal coherence degradation at the large-array input, both for horizontal and vertical arrays in an underwater channel, and to predict the coherence effects on the output performance, array beampattern and gain included. The vertical array operation is emphasized to be the most interesting problem here due to the specific features of ambient noise in real oceanic channels. An essential conclusion concerns the fact that not only the signal coherence but signal localization in mode domain as is compared with the ambient noise affect together the array output performance.
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