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Target Detection on the Ocean With the Relative Phase of Compact Polarimetry SAR

机译:紧凑极化SAR相对相位的海洋目标检测

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This paper discusses the potential for automatic ocean surveillance using compact linear polarization (CL-pol) synthetic aperture radar (SAR), with large area coverage. Here, the target is a wind farm in the North Sea. The relative phase, as derived from CL-pol SAR, is employed for detection of the wind turbines, apart from the wind turbines' wakes, based on fine-mode quad-polarization (quad-pol) RADARSAT-2 (RS-2) images. The relative phase of CL-pol measurements improves the contrast between the wind turbines and their wakes, because it has opposite signs for these two entities. Moreover, there is almost no variation in the relative phase with respect to wind speed or incidence angle. The results are verified by high-sea-state cases, up to 8.7-m significant wave height and 24.3-m/s wind speed, and also 641 quad-pol RS-2 SAR images collocated with 52 National Data Buoy Center buoys at different incidence angles and sea states. Thus, the relative phase of CL-pol SAR provides new light into the problem of operational autodetection of man-made targets, under high-sea-state conditions, over large areas.
机译:本文讨论了使用紧凑线性极化(CL-pol)合成孔径雷达(SAR)进行大面积覆盖的自动海洋监视的潜力。在这里,目标是北海的一个风电场。从CL-pol SAR推导的相对相位,基于精细模式四极化(quad-pol)RADARSAT-2(RS-2),用于检测风力涡轮机,除了风力涡轮机的尾流。图片。 CL-pol测量的相对相位改善了风力涡轮机及其尾流之间的对比度,因为这两个实体具有相反的符号。而且,相对相位相对于风速或入射角几乎没有变化。这些结果已通过高海况案例,高达8.7 m的显着波高和24.3 m / s的风速以及由641个四极点RS-2 SAR图像与52个国家数据浮标中心浮标并置在一起的情况得到了验证。入射角和海况。因此,CL-pol SAR的相对相位为在高海况条件下大面积操作人造目标的操作自动检测问题提供了新的思路。

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