A Study on Improving the Performance of Low-Altitude, High-Speed Target Detection at Sea Using Dual-Band Radar

Ki-Jun Rah, Geon Lee, Ki-Bong Kang, Min Kim, Si-Ho Kim, Kyung-Tae Kim
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Abstract

Low-altitude and high-speed targets that fly close to the sea level are generally detected using a single-band moving target indicator (MTI) technique. The MTI technique detects a moving target by filtering out the sea-clutter Doppler spectrum. However, when detecting a low-altitude, high-speed target flying close to the sea, blind speed problems can occur because of the fast maneuvering characteristics of the target. Moreover, multipath phenomena and false alarm may occur due to the influence of the sea. Such problems make detection difficult. In this paper, we propose a detector suitable for high-speed targets in sea conditions using dual-band radar. Low-altitude and high-speed targets were modeled by considering the maritime situation, and robust detection against blind speed and multipath phenomena was confirmed by applying the proposed technique to the average Doppler power of the received signal in each band. Finally, simulations for various speeds and distances of the target confirmed that the proposed method showed improved target detection performance than the existing single-band method when detecting low-altitude, high-speed targets in sea conditions.
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利用双波段雷达提高海上低空高速目标探测性能的研究
低空和高速靠近海平面飞行的目标通常采用单波段移动目标指示器(MTI)技术进行探测。MTI技术通过滤除海杂波多普勒频谱来探测移动目标。然而,在探测低空、高速靠近海面飞行的目标时,由于目标的快速机动特性,可能会出现盲速问题。此外,由于海面的影响,可能会出现多径现象和虚警。这些问题使检测变得困难。本文提出了一种适用于海况下高速目标的双波段雷达探测器。考虑海上情况对低空和高速目标进行建模,并对各波段接收信号的平均多普勒功率进行鲁棒检测,验证了该方法对盲速和多径现象的鲁棒检测。最后,对不同航速和距离的目标进行了仿真,验证了该方法在低空高速海况目标检测中比现有单波段方法具有更好的目标检测性能。
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