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Ocean target monitoring with improved revisit time using constellations of GNSS-R instruments

机译:使用GNSS-R仪器群,以更短的重访时间进行海洋目标监视

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Ships and ice monitoring is of key importance in numerous applications, such as maritime traffic control, prevention of illegal activities, climate change studies, and maritime security. In this work, the feasibility of near real-time ocean target detection from a constellation of spaceborne Global Navigation Satellite System-Reflectometry (GNSS-R) images is demonstrated by addressing the two following points: 1) simulation of the revisit time allowed by constellations of GNSS-R instruments; 2) derivation and implementation of an ocean target detector aimed at identifying inhomogeneous features inside the delay-Doppler map. The revisit time is computed by simulating a realistic mission as a function of the constellation size and the number of receiving channels of the GNSS-R instrument. The proposed ocean target detection algorithm consists of four steps - pre-processing, pre-screening, selection, and geolocation - and is validated using actual U. K. TechDemoSat-1 data.
机译:船舶和冰监测在许多应用中至关重要,例如海上交通管制,防止非法活动,气候变化研究和海上安全。在这项工作中,通过解决以下两个问题,论证了从星载全球导航卫星系统反射法(GNSS-R)图像星座中进行近实时海洋目标检测的可行性:1)模拟星座允许的重访时间GNSS-R仪器; 2)旨在识别延迟多普勒图中的非均匀特征的海洋目标探测器的推导和实现。重访时间是通过模拟实际任务来计算的,该任务是星座大小和GNSS-R仪器的接收通道数量的函数。拟议的海洋目标检测算法包括四个步骤-预处理,预筛选,选择和地理位置-并使用英国的TechDemoSat-1实际数据进行了验证。

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