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Performance Evaluation of Radar and Decoy System Counteracting Antiradiation Missile

机译:雷达与诱饵系统相互作用反辐射导弹的性能评估。

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摘要

Considering the pattern, polarization, and propagation characteristics, a method for modeling the radiation field of radar and decoy is described. Based on the mechanism of two-channel direction-finding systems with a four-arm spiral antenna, the generating model of the guidance signal related to the superposed field radiated by the antennae of the radar and the decoys is presented. By introducing a simplified movement model of an antiradiation missile, the dynamic simulation algorithms and formulas for analyzing deception effects are proposed. The effects of the initial phases, the time sequence, and the signal waveform on the survival probabilities of the radar and the decoys are discussed briefly. Numerical results show that high survival probabilities of the radar and the decoys can be obtained when three decoys have been distributed near the radar in an appropriate quadrangular topology, in which the distances between the radar and the decoys are about 350~m and the decoy level is slightly higher than the average side lobe level of the radar.
机译:考虑到图案,极化和传播特性,描述了一种模拟雷达和诱饵辐射场的方法。基于带四臂螺旋天线的两通道测向系统的机理,提出了与雷达天线和诱饵天线辐射的叠加场有关的制导信号的生成模型。通过引入反辐射导弹的简化运动模型,提出了用于分析欺骗效果的动态仿真算法和公式。简要讨论了初始阶段,时间序列和信号波形对雷达和诱饵的生存概率的影响。数值结果表明,在适当的四边形拓扑结构下,在雷达附近分布三个诱饵时,可以获得很高的雷达和诱饵存活率,其中雷达与诱饵之间的距离约为350〜m,且诱饵水平较高。略高于雷达的平均旁瓣水平。

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