用于三维雷达的高分辨率测角仪

Guoqiang Sun, Fangning Tian, Qun Zhang
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摘要

随着科学技术的发展,航空变得越来越重要,但没有雷达探测,航空安全是无法保证的。航空管理人员应时刻监控飞机的距离、方向和高度,以避免发生紧急情况,但雷达对低仰角目标的探测容易受到地形的影响,特别是多径、目标和地面反射会导致回波信号叠加,干扰雷达对目标的探测,降低雷达的探测概率和探测精度。此外,不同的地形,如山地、平原和海洋,对雷达的探测效果也不同。因此,需要设计一种能够在各种地形条件下使用的高分辨率三维雷达系统测角仪。本研究系统地描述了多径反射对雷达探测的影响,包括各种算法的处理方法和优缺点,并提出了一种结合多种几何算法的方法。仿真试验表明,高分辨率测角设计能有效提高雷达的测角精度,充分论证了高分辨率测角设计在三维雷达系统中的可行性。
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High-resolution goniometer for three-dimensional radars
Aviation is becoming progressively important with the development in science and technology, but aviation safety cannot be guaranteed without radar detection. Aviation managers should always monitor the distance, direction, and altitude of aircrafts to avoid emergencies, but the detection of low elevation angle targets by a radar is easily affected by the terrains;particularly, the multipath, target, and ground reflections can lead to superposed echo signals, which would interfere with the target detection by the radar, and reduce the detection probability and detection accuracy of the radar. Furthermore, different terrains, such as mountains, plains, and oceans, have different detection effects on the radar. Therefore, a high-resolution goniometer for three-dimensional radar systems should be designed that can be used under various terrain conditions. The present study systematically describes the effects of multipath reflections on radar detection, including the processing methods as well as the advantages and disadvantages of various algorithms, and proposes a method combining multiple goniometric algorithms. Simulation tests show that the high-resolution goniometric design can effectively improve the goniometric accuracy of the radar, which fully demonstrates the feasibility of the high-resolution goniometry design in a three- dimensional radar system.
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