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Design and verification of multi-octave active countermeasure system using novel triple closed loop simulation

机译:基于新型三重闭环仿真的多倍频程主动对策系统设计与验证

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Highly intelligent search and tracking radars operating in various frequency bands are integral part of defense system against long range ballistic missiles. Frequency and polarization agile active countermeasure system facilitates deception and delayed discrimination & target acquisition by these threat radars. This paper presents design and verification of a multi octave expendable active countermeasure system using novel triple closed loop system simulation and measurement methodology implemented via software-hardware-software (SW-HW-SW) interface. A virtual radar-channel-counter-measure-channel-radar scenario was generated using system simulation tool. The path between transmitter and receiver of radar simulation model was looped back using target Radar Cross Section (RCS) model and countermeasure model implemented in software whereas third loop-back was implemented using fabricated hardware. Simultaneous coherent detection and analysis of these three time-synchronized received signals were carried out for verification of deception and visualization of fabricated artificial target as perceived by ground based radar in hypothetical conditions. The design and verification methodology with results have been presented for conducted mode tests.
机译:在各种频带下运行的高度智能的搜索和跟踪雷达是防御远程弹道导弹的必不可少的部分。频率和极化敏捷主动对策系统有助于这些威胁雷达的欺骗和延迟辨别以及目标的获取。本文介绍了一种新颖的三重闭环系统仿真和通过软件-硬件-软件(SW-HW-SW)接口实现的测量方法,对一个多倍频程消耗性主动对策系统进行设计和验证。使用系统仿真工具生成了虚拟的雷达通道对策通道雷达场景。雷达仿真模型的发射器和接收器之间的路径使用目标雷达横截面(RCS)模型和对策模型以软件实现,而第三次环回则使用制造的硬件实现。对这三个时间同步的接收信号进行了同步相干检测和分析,以验证假想条件下地面雷达感知的人造目标的欺骗和可视化。已经针对进行的模式测试介绍了设计和验证方法以及结果。

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