基于BPSK信号和数字多普勒频移补偿的高速目标跟踪371雷达系统

Z. Golubičić, S. Simic, A. Zejak, B. Reljić, Svetislav Marić
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引用次数: 0

摘要

介绍/目的:本文提出了一种比现有的高速目标雷达跟踪系统简单得多的模型。在信号压缩前对多普勒频移进行补偿,同时对压缩滤波器中的时钟信号进行修改。由于FPGA技术的发展,这成为可能。对于这个应用来说,最重要的是非常快的时钟控制单元,它可以在高达1 GHz的不同频率参考下运行,精度远低于1 Hz。方法:本文采用数学建模和仿真的方法。结果:给出并讨论了高速目标对雷达产生的最重要影响——目标通过分辨单元的偏移和高目标加速度引起的压缩滤波器响应失真。结论:由于灵活的射频和信号处理硬件,不需要复杂的雷达处理程序。BPSK信号对多普勒频移的灵敏度(这通常被认为是一个缺点)可以用来以稍微不同的速率拒绝目标。该系统可用于空间碎片跟踪、空域目标跟踪、汽车驾驶等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High speed target tracking 371 radar system based on the use of BPSK signal and digital Doppler shift compensation
Introduction/purpose: This paper presents a model of a high speed target radar tracking system that is much simpler than the existing ones. The Doppler shift is compensated before signal compression, simultaneously with the modification of the clock signal in the compression filter. This is possible thanks to the development of FPGA technology. The most important for this application are very fast clock control units which enable operation with different frequency references up to 1 GHz with an accuracy far below 1 Hz. Methods: In this paper, the methodology of mathematical modeling and simulation is used. Results: The results of the analysis of the most important effects in radars caused by high-speed targets are presented and discussed - target migration through resolution cells and compression filter response distortion due to high target acceleration. Conclusion: Thanks to flexible RF and signal processing hardware, complex radar processing procedures are not required. The sensitivity of the BPSK signal to the Doppler shift (which is usually considered a disadvantage) can be used to reject targets at a slightly different rate. This system can be used in space debris tracking, airspace target tracking, car driving, etc.
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