Combining two phase codes to extend the radar unambiguous range and get a trade-off in terms of performance for any clutter

T. Rouffet, É. Grivel, P. Vallet, C. Enderli, S. Kemkemian
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引用次数: 3

Abstract

This paper deals with a phase-coded waveform which combines two binary phase codes, each impacting on specific properties of the radar receiving channel. After giving a detailed analysis of the expression of the received signal after processing when the Gaussian clutter is modeled by a pth-order autoregressive process, we focus our attention on the choice of the two phase codes: one aims at increasing the unambiguous range whereas the other is chosen by taking into account several criteria such as the detection performance. For this purpose, we suggest determining the Pareto fronts of 1st, 2nd and 3rd orders by means of an exhaustive search. Given the three Pareto fronts for different types of clutters simulated by making the AR parameters vary, we provide an automatic way to determine, before embedding it, the most robust phase codes using a fuzzy logic operator.
结合两相码扩展雷达的无二义距离,并在任何杂波条件下获得性能上的折衷
本文研究了一种相位编码波形,该波形由两个二进制相位编码组合而成,每个相位编码都会影响雷达接收信道的特定特性。在详细分析了用p阶自回归过程对高斯杂波进行建模处理后接收信号的表达式后,我们将注意力集中在两个相位码的选择上:一个旨在增加无二义范围,而另一个则考虑检测性能等几个标准来选择。为此,我们建议通过穷举搜索来确定一阶、二阶和三阶的帕累托前沿。通过使AR参数变化来模拟不同类型杂波的三个Pareto前沿,我们提供了一种自动方法,在嵌入之前使用模糊逻辑算子确定最鲁棒的相位码。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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