Real-time Beam Optimization of Millimeter-Wave Array Radar Based on Multi-FPGA Pipeline Architecture

Muhui Cai, Zhiqiang Sun, Wei Hua, Sili Wu, Yushan Guo, Ying Sun
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Abstract

High-performance monitoring or imaging is the core task of the radar system. However, depending on the observation environment, strong clutter, passive interference, and active interference will affect the realization of phased array radar system functions. In this regard, this research focuses on the real-time suppression of unknown interference source directions and multiple interferences and the optimization of radar array beams, and carries out high-efficiency, high-throughput hardware computing architecture design and algorithm calculation optimization. And carry out the confrontation test based on the hardware simulation platform to verify the design performance.
基于多fpga流水线架构的毫米波阵列雷达实时波束优化
高性能监控或成像是雷达系统的核心任务。但是,根据观测环境的不同,强杂波、无源干扰、有源干扰都会影响相控阵雷达系统功能的实现。为此,本研究重点研究了未知干扰源方向和多重干扰的实时抑制以及雷达阵列波束的优化,并进行了高效、高吞吐量的硬件计算架构设计和算法计算优化。并在硬件仿真平台上进行了对抗试验,验证了设计的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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