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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Microwave systems design for high-performance moving target indicators in radars
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Microwave systems design for high-performance moving target indicators in radars

机译:用于雷达中高性能移动目标指示器的微波系统设计

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摘要

Clutter cancellation of 65 dB and better is directly proportional to good radar stability, and since many hardware areas produce instabilities at various levels, the architecture of a radar requires special design considerations to support this high stability. The noise character and generation methods of these instabilities in the various hardware areas are described, and design solutions are given to eliminate them. Microwave delay line, a reliable, accurate method of measuring radar stability in L- and S-band radars, is described. The longest microwave delay line available for use at L-band and S-band frequencies is a 15- mu s sapphire bulk acoustic wave (BAW) delay line. For higher-frequency radars, smaller delays must be used to keep the insertion loss down to a usable level. The question is raised as to the adequacy of this delay time to provide sufficient visibility for stability measurements of the stable noise. For transmitter measurements, it is adequate for the more common pulse widths, which are less than 15 mu s. For LO measurements, the analysis shows that this delay does provide sufficient decorrelation for accurate LO noise measurements.
机译:65 dB或更佳的杂波消除与良好的雷达稳定性直接成正比,并且由于许多硬件区域会在各个级别产生不稳定性,因此雷达的体系结构需要特殊的设计考虑因素来支持这种高稳定性。描述了各种硬件区域中这些不稳定性的噪声特性和产生方法,并给出了解决方案以消除它们。微波延迟线是一种可靠,准确的测量L波段和S波段雷达中雷达稳定性的方法。可用于L波段和S波段频率的最长微波延迟线是15μs的蓝宝石体声波(BAW)延迟线。对于高频雷达,必须使用较小的延迟以将插入损耗降低到可用水平。对于该延迟时间是否足以为稳定噪声的稳定性测量提供足够的可见性提出了一个问题。对于发射机测量,对于更常见的脉冲宽度(小于15μs)就足够了。对于本振测量,分析表明,该延迟确实为准确的本振噪声测量提供了足够的去相关性。

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