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Adaptive Compressive Sensing and Processing of Delay-Doppler Radar Waveforms

机译:延迟多普勒雷达波形的自适应压缩传感与处理

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Compressive sensing and processing handles high-resolution delay-Doppler radar measurements using a low sampling rate, simple receiver design, and inexpensive processing when Nyquist rate sensing and processing becomes impractical. The benefits of compressive sensing and processing are, however, offset by an increase in estimation error that is introduced when processing compressed measurements versus measurements sampled at the Nyquist rate. In this work, an adaptive compressive sensing and processing method is proposed for the radar tracking problem. The adaptive scheme naturally incorporates information on target state that is readily available from a particle filter based tracker. The proposed method is shown to improve tracking performance over nonadaptive compressive sensing and processing, while maintaining low-sampling rates, a computationally inexpensive operation, and a simple receiver design.
机译:当奈奎斯特速率感测和处理变得不切实际时,压缩感测和处理使用低采样率,简单的接收器设计和廉价的处理来处理高分辨率延迟多普勒雷达测量。但是,压缩感测和处理的优势被估计误差的增加所抵消,该估计误差的增加是在处理压缩测量值与以奈奎斯特速率采样的测量值时进行的。在这项工作中,针对雷达跟踪问题提出了一种自适应压缩感知和处理方法。自适应方案自然包含了有关目标状态的信息,这些信息可以从基于粒子过滤器的跟踪器中轻松获得。所提出的方法显示出在非自适应压缩感测和处理上提高了跟踪性能,同时保持了低采样率,计算上便宜的操作以及简单的接收器设计。

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