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Asynchronous compressive multi-channel radar for interference-robust vehicle collision avoidance systems

机译:异步压缩多通道雷达,用于鲁棒车辆防撞系统

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This paper presents a low-power asynchronous compressive sensing (ACS) front-end scheme that allows the coexistence of radar and wireless systems. The analog front-end architecture introduces one major system advantage needed in an interference-robust wideband radar: multiple parallel signal processing channels capable of rejecting inband interference and handling large data volume at the analog-to-digital converters output. This advantage is offered by a filter-bank parallel ACS receiver that filters out undesired interference and exploits the sparsity of radar pulsed signals in a scattered environment. Numerical simulations on a vehicle-to-vehicle collision avoidance radar system with in-band wireless interference demonstrate the proposed radar receiver is robust to in-band interference, and achieves 6-fold data volume compression compared with Nyquist sampling.
机译:本文提出了一种低功耗异步压缩传感(ACS)前端方案,该方案允许雷达和无线系统共存。模拟前端体系结构引入了抗干扰宽带雷达所需的一项主要系统优势:多个并行信号处理通道,它们能够抑制带内干扰并能够在模数转换器输出端处理大量数据。滤波器组并行ACS接收器提供了这一优势,它可以滤除不良干扰,并在分散的环境中利用雷达脉冲信号的稀疏性。在具有带内无线干扰的车对车防撞雷达系统上的数值仿真表明,所提出的雷达接收器对带内干扰具有鲁棒性,并且与奈奎斯特采样相比,实现了6倍的数据量压缩。

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