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HIGH DUTY WAVEFORM DESIGN FOR ACTIVE ARRAY AIRBORNE SURVEILLANCE RADARS

机译:高度波形设计用于活跃阵列机载监控雷达

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摘要

Future airborne surveillance radars are likely to be composed of solid state active element transmitters with sub arrayed receivers for adaptive processing. To give sensitive detection performance these radars will be required to operate at high duty to deliver high mean powers. This poses new problems for surveillance waveform designers. Two approaches in designing high duty scheduled waveforms are presented. The first approach is by best practice. Equations for high duty waveform design are given. A second approach was taken that used an evolutionary algorithm to optimise to a solution by evaluating a set of waveform performance metrics. A sensitivity metric, modelling adaptive radar detection performance using simplified empirical and algebraic models is presented. Following this a Ghosting/decodability metric is described which uses a novel assessment method for determining a waveform's susceptibility to ghosts and decode problems. Results of both approaches are given throughout.
机译:未来的空中监控雷达可能由具有用于自适应处理的子阵列接收器的固态有源元件发射器组成。为了给出敏感的检测性能,这些雷达需要在高税时运行,以提供高平均动力。这对监控波形设计者带来了新的问题。提出了设计高占占定量波形的两种方法。第一种方法是最好的做法。给出了高占用波形设计的方程。采用第二种方法,使用进化算法通过评估一组波形性能度量来优化到解决方案。提出了一种灵敏度,使用简化的经验和代数模型来建模自适应雷达检测性能。在此之后,描述了一种重影/可解码性度量,其使用新的评估方法来确定波形对鬼魂和解码问题的波形的敏感性。两种方法的结果都在综合下来。

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