距离分辨率作为带宽和频率函数的表征

S. Welstead
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引用次数: 4

摘要

宽带雷达系统通常仅将距离分辨率表示为带宽的函数。这种解析度的解释与点散射体对应的单峰宽度有关,类似于光学中的瑞利判据。然而,如果将分辨率解释为在下转换、脉冲压缩的雷达回波中分辨两个间隔很近的散射体的能力,那么分辨率是频率和带宽的函数。本文表明,在固定带宽下,两个紧密间隔的散射体处理回波的峰分离质量是频率和距离分离的非线性非单调函数。仿真结果表明,采用全脉冲压缩处理的未压缩波形返回,绘制出峰值分离质量作为频率的函数。分析结果显示了为什么这种频率相关的行为应该是预期的,以及带宽在非线性中的表现。近距离散射体的频率相关分辨率对于需要高距离分辨率和在多雷达环境中利用频率分集进行操作的应用具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of Range Resolution as a Function of Bandwidth and Frequency
Wideband radar systems typically express range resolution as a function of bandwidth only. This interpretation of resolution is related to the width of a single peak corresponding to a point scatterer, and is analogous to the Rayleigh criterion in optics. However, if one interprets resolution to mean the ability to resolve two closely spaced scatterers in a downconverted, pulse-compressed radar return, then resolution is a function of frequency as well as bandwidth. This paper shows that, for fixed bandwidth, the quality of peak separation in the processed return of two closely spaced scatterers is a nonlinear, nonmonotonic function of frequency and range separation. Simulation results, using full pulse-compression processing of uncompressed waveform returns, plot peak separation quality as a function of frequency. Analytical results show why this frequency-dependent behavior should be expected and how bandwidth figures in the nonlinearity as well. Frequency-dependent resolution of closely spaced scatterers has implication for applications that need high range resolution and also utilize frequency diversity for operation in a multi-radar environment.
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