相干退化信号的大阵列处理:分析研究,建模和优化可能性的估计

IF 0.8 4区 地球科学 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
A. I. Malekhanov, A. V. Smirnov
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引用次数: 0

摘要

本文对接收阵列输入端有用信号的空间相干性大大减弱、相干长度相对于阵列尺寸较小的情况下阵列信号处理的各种技术进行了比较分析。本文的主要重点是对实现次优处理的阵列增益高值的实际可能性的现实估计,这接近于在这种条件下最优处理的最大可能值。为此,使用了信号相干函数的广义参数模型,该模型允许人们分析相干退化信号的各种接收场景,并根据阵列增益在广泛的指定参数范围内获得表征输出性能的关键依赖关系。结果表明,次优方法的选择主要取决于两个物理参数,即相对信号相干长度(相对于阵列大小)和信号场中相干分量的相对水平(相对于其总强度)。研究结果可用于远程声纳和雷达的各种应用,在这些应用中,信号波前的相干性退化成为大型阵列工作中典型的环境效应。
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 Processing of Coherence-Degraded Signals: Analytical Study, Modeling, and Estimations of Optimization Possibilities

This paper gives a comparative analysis of various techniques of array signal processing in cases where the spatial coherence of the useful signal at the input of the receiving array is greatly weakened and the coherence length is small compared to the array size. The main focus is on realistic estimates of the practical possibilities of achieving high values of the array gain for suboptimal processing, which are close to the maximum possible values for optimal processing in such conditions. For this, a generalized parametric model of the signal coherence function is used, which permits one to analyze various reception scenarios for coherence-degraded signals and obtain key dependences characterizing output performance in terms of the array gain in a wide range of specified parameters. It is shown that the choice of the suboptimal method crucially depends on two physical parameters, namely, the relative signal coherence length (compared to the array size) and the relative level of the coherent component in the signal field (compared to its total intensity). The results are considered to be useful for various applications in long-range sonar and radar, where the coherence degradation of the signal wave fronts becomes a typical environmental effect in large array operation.

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来源期刊
Radiophysics and Quantum Electronics
Radiophysics and Quantum Electronics ENGINEERING, ELECTRICAL & ELECTRONIC-PHYSICS, APPLIED
CiteScore
1.10
自引率
12.50%
发文量
60
审稿时长
6-12 weeks
期刊介绍: Radiophysics and Quantum Electronics contains the most recent and best Russian research on topics such as: Radio astronomy; Plasma astrophysics; Ionospheric, atmospheric and oceanic physics; Radiowave propagation; Quantum radiophysics; Pphysics of oscillations and waves; Physics of plasmas; Statistical radiophysics; Electrodynamics; Vacuum and plasma electronics; Acoustics; Solid-state electronics. Radiophysics and Quantum Electronics is a translation of the Russian journal Izvestiya VUZ. Radiofizika, published by the Radiophysical Research Institute and N.I. Lobachevsky State University at Nizhnii Novgorod, Russia. The Russian volume-year is published in English beginning in April. All articles are peer-reviewed.
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