非线性合成宽带波形

D. Rabideau
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引用次数: 62

摘要

雷达通常使用宽带宽脉冲来获得高距离分辨率。然而,当这种宽带脉冲不可用(或不希望)时,仍然可以通过相干地组合跨越所需带宽的一系列窄带脉冲来实现高距离分辨率。总的来说,这种窄带脉冲序列被称为构成“合成宽带波形”(具体变体也被称为“阶跃频率波形”、“跳频突发”和“跳频序列”)。先前的出版物和报告已经研究了在频带上均匀分布能量的合成宽带波形。这种波形需要重谱加权、高重叠脉冲和/或非周期脉冲来控制范围旁瓣和光栅瓣;不幸的是,不需要的属性都与这些属性相关联。我们制定合成波形,在所需的频带上不均匀地分布能量。与传统方法相比,这些新波形提供了更好的性能(即,更低的范围旁瓣,更高的增益,更高的范围分辨率和/或减少的光栅瓣)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonlinear synthetic wideband waveforms
Radars commonly use wide bandwidth pulses to attain high range resolution. However, when such wideband pulses are unavailable (or otherwise undesirable), high range resolution can still be achieved by coherently combining a sequence of narrowband pulses spanning the desired bandwidth. Collectively, such narrowband pulse sequences are said to compose a "synthetic wideband waveform" (specific variants are also known by the names "stepped frequency waveform", "frequency jump burst" and "frequency jump train"). Prior publications and reports have examined synthetic wideband waveforms that distribute energy uniformly over the frequency band. Such waveforms require heavy spectral weighting, highly overlapped pulses and/or nonperiodic pulses to control the range sidelobes and grating lobes; unfortunately, undesirable attributes are associated with each of these. We formulate synthetic waveforms that distribute energy nonuniformly over the desired frequency band. These new waveforms are shown to offer improved performance (i.e., lower range sidelobes, higher gain, higher range resolution and/or reduced grating lobes) when compared with traditional approaches.
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