雷达系统的高功率微波干扰效应

Changan Kou, Xiaobin Tang, Kang Shao, Jiangling Liu
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引用次数: 1

摘要

随着大功率微波武器逐步进入战场,准确评估大功率微波干扰效果具有越来越重要的现实意义。首先,建立了基于非线性射频前端的雷达仿真系统。分析了大功率微波对雷达非线性射频前端和脉冲压缩处理模块的干扰影响。认为干扰信号在时域上是否覆盖回波信号是影响干扰的主要因素。其次,将不同参数的同频干扰信号与目标回波信号一起注入系统,计算雷达系统在扰动状态下的目标探测概率;基于概率评价准则和最小二乘法对数据进行分析,拟合了干扰脉冲重复间隔与雷达目标探测概率的数学模型。结果表明,当功率足够大时,干扰信号的脉冲重复间隔与目标检测概率构成幂函数关系,函数参数与干扰信号脉宽呈线性关系。当大功率微波与雷达传输信号的脉冲重复间隔达到一定比例时,可以实现有效干扰。在相同占空比下,高脉冲重复率的干扰信号的干扰效应明显强于高脉宽的干扰信号。对高功率微波的抑制会显著降低雷达的探测性能。该模型可用于干扰脉冲的优化设计和干扰效果的预测与评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High power microwave interference effect of radar system
With the gradual entry of high-power microwave weapons into the battlefield, the accurate evaluation of high-power microwave interference effects has increasingly important practical significance. Firstly, a radar simulation system based on nonlinear RF front-end is established. The interference effect of high-power microwave on radar nonlinear RF front-end and pulse compression processing module is analyzed. It is concluded that whether the interference signal covers the echo signal in the time domain is the main factor of the interference. Secondly, the same-frequency interference signal with different parameters is injected into the system together with the target echo signal to calculate the target detection probability of the radar system under the disturbed state. Based on the probability evaluation criterion and the least squares method, the data is analyzed, and the mathematical model of the interference pulse repetition interval and the radar target detection probability is fitted. The results show that when the power is large enough, the pulse repetition interval of the interference signal and the target detection probability constitute a power function relationship, and the function parameters are linearly related to the interference signal pulse width. When the pulse repetition interval of the high-power microwave and the radar transmission signal reaches a certain ratio, effective interference can be achieved. Under the same duty cycle, the interference effect of the interference signal with high pulse repetition rate is obviously stronger than that of the high pulse width. The suppression of high-power microwaves can significantly reduce the radar detection performance. The model can be used to optimize the interference pulse design and the prediction and evaluation of interference effects.
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