Ambiguity function analysis for the chirp diverse waveform (CDW)

V. Vannicola, T. Hale, M. Wicks, P. Antonik
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引用次数: 19

Abstract

We evaluate the radar performance for chirp pulse (linear FM) trains in which the chirp rate is diverse from pulse to pulse. The evaluation consists of deriving the ambiguity function in generalized form for any number of pulses, pulse repetition rate, time bandwidth product, and diversity spread across the pulse train. Since each pulse has a different chirp rate, convolution and factorization cannot provide closed form expressions for the ambiguity functions of interest. However, numerical integration, programmed in MatLab, reveals the effects of the degree of chirp diversity and time bandwidth product on the waveform's ambiguity diagram. The recurrent lobe structure of the three-dimensional ambiguity diagram is of special interest. We present a simple formula for selecting the different chirp rates for particular diversity spreads. We conclude that a dramatic decrease in the range recurrent lobe level occurs as we increase the time bandwidth product and/or degree of chirp diversity.
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啁啾变化波形的模糊函数分析
我们评估了啁啾脉冲(线性调频)列车的雷达性能,其中啁啾率随脉冲而变化。评估包括推导任意数量脉冲的广义模糊函数、脉冲重复率、时间带宽积和分布在脉冲序列上的分集。由于每个脉冲具有不同的啁啾率,卷积和分解不能为感兴趣的模糊函数提供封闭的形式表达式。然而,在MatLab中编写的数值积分揭示了啁啾分集程度和时间带宽积对波形模糊图的影响。三维模糊图的循环瓣结构是特别有趣的。我们提出了一个简单的公式来选择不同的啁啾率为特定的多样性扩散。我们得出的结论是,当我们增加时间带宽乘积和/或啁啾多样性的程度时,会发生范围周期性瓣电平的急剧下降。
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