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Polar constellations design for discontinuous coverage

机译:极星座设计,可实现不连续覆盖

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摘要

A novel constellation design method is developed for discontinuous coverage of the globe and polar caps. It integrates and extends the applicability of the coverage regions and mitigates the limitations of the existing techniques based on streets-of-coverage (SOC) theory. In particular, the visibility conditions of the targets are mapped in the (Omega, u)-domain to identify the number of satellites per plane and the distance between successive orbits, whereas the planes are arranged around the equator exploiting satellites both in ascending and descending phase. The proposed approach is applied to design potential space segments in polar LEO supporting the existing maritime surveillance services over the globe and on the future polar routes. Results show they require a smaller total number of satellites with respect to the SOC-based configurations for revisit times less than one hour and wide range of swaths. In details, it is observed a reduction between 6% and 22% for global coverage and between 24% and 33% for the coverage of polar caps. (C) 2016 IAA. Published by Elsevier Ltd. All rights reserved.
机译:开发了一种新颖的星座设计方法,用于不连续覆盖地球仪和极地帽。它整合并扩展了覆盖区域的适用性,并减轻了基于覆盖街道(SOC)理论的现有技术的局限性。特别是,将目标的可见性条件映射到(Omega,u)域中,以识别每个平面上的卫星数量以及连续轨道之间的距离,而这些平面则围绕上升和下降的赤道利用卫星排列相。拟议的方法适用于设计极地LEO的潜在空间部分,以支持全球以及未来极地航线上的现有海上监视服务。结果表明,相对于基于SOC的配置,它们需要的卫星总数更少,重访时间不到一小时,扫描范围广。详细地,观察到全球覆盖范围减少了6%至22%,而极地覆盖范围减少了24%至33%。 (C)2016 IAA。由Elsevier Ltd.出版。保留所有权利。

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