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Design and Implementation of a FPGA and DSP Based MIMO Radar Imaging System

机译:基于FPGA和DSP的MIMO雷达成像系统的设计与实现

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摘要

The work presented in this paper is aimed at the implementation of a real-time multiple-input multiple-output (MIMO) imaging radar used for area surveillance. In this radar, the equivalent virtual array method and time-division technique are applied to make 16 virtual elements synthesized from the MIMO antenna array. The chirp signal generater is based on a combination of direct digital synthesizer (DDS) and phase locked loop (PLL). A signal conditioning circuit is used to deal with the coupling effect within the array. The signal processing platform is based on an efficient field programmable gates array (FPGA) and digital signal processor (DSP) pipeline where a robust beamforming imaging algorithm is running on. The radar system was evaluated through a real field experiment. Imaging capability and real-time performance shown in the results demonstrate the practical feasibility of the implementation.
机译:本文提出的工作旨在实现用于区域监视的实时多输入多输出(MIMO)实时成像雷达。在这种雷达中,等效虚拟阵列方法和时分技术被应用于从MIMO天线阵列合成16个虚拟元件。线性调频脉冲发生器基于直接数字合成器(DDS)和锁相环(PLL)的组合。信号调节电路用于处理阵列内的耦合效应。信号处理平台基于高效的现场可编程门阵列(FPGA)和数字信号处理器(DSP)管线,并在该管线上运行强大的波束形成成像算法。雷达系统通过实地实验进行了评估。结果中显示的成像能力和实时性能证明了实施的实际可行性。

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