Universal Design Curves for Effects of Dispersion in Phased Array Radars

W. Shrader
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引用次数: 4

Abstract

Wide bandwidth waveforms, providing high range resolution, are becoming increasingly prevalent with the advent of diminiscing costs for signal processing. However, phased array radars that do not incorporate time-delay steering suffer dispersion loss and pulse broadening effects from wide bandwidth waveforms. This paper presents universal design curves for quantifying the effects of dispersion in corporate-fed (equal line length) phased arrays. These curves are applicable to all shapes of aperture (linear, rectangular, oval, or circular) and to all types of waveforms (unmodulated pulses, frequency modulated, and phased coded). Conversion factors are presented to convert physical aperture size to effective aperture size for different aperture shapes and illumination functions. Similarly, conversion factors are presented for determining effective pulse length for the radar pulses whether the pulses are unmodulated, phase coded, or frequency modulated with a large spread of time-sidelobe design levels.
相控阵雷达色散效应的通用设计曲线
随着信号处理成本的降低,提供高范围分辨率的宽带波形正变得越来越普遍。然而,不采用延时转向的相控阵雷达会遭受色散损失和宽带宽波形的脉冲展宽效应。本文提出了一种通用的设计曲线,用于量化共馈(等线长)相控阵中色散的影响。这些曲线适用于所有形状的孔径(线性、矩形、椭圆形或圆形)和所有类型的波形(无调制脉冲、调频和相位编码)。针对不同孔径形状和不同照明功能,提出了将物理孔径大小转换为有效孔径大小的转换因子。同样,本文提出了转换因子,用于确定雷达脉冲的有效脉冲长度,无论脉冲是未调制的、相位编码的,还是具有大量时间旁瓣设计电平的频率调制的。
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