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首页> 外文期刊>Acta astronautica >Fundamentals of the route theory for satellite constellation design for Earth discontinuous coverage. Part 4: Compound satellite structures on orbits with synchronized nodal regression
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Fundamentals of the route theory for satellite constellation design for Earth discontinuous coverage. Part 4: Compound satellite structures on orbits with synchronized nodal regression

机译:路线理论的基本原理,用于地球不连续覆盖的卫星星座设计。第4部分:同步节点回归的轨道上的复合卫星结构

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Basing on the theory results considered in the previous papers of the series for traditional one-tiered constellation formed on the orbits with the same values of altitudes and inclinations for all the satellites of the constellation, the method for constellation design using compound satellite structures on orbits with different altitudes and inclinations and synchronized nodal regression is developed. Compound, multi-tiered, satellite structures (constellations) are based on orbits with different values of altitude and inclination providing nodal regression synchronization. It is shown that using compound satellite constellations for Earth periodic coverage makes it possible to sufficiently improve the Earth coverage, as compared to the traditional constellations based on the orbits with common altitude and inclination for all the satellites of the constellation, and, as a consequence, to get new opportunities for the satellite constellation design for different types of prospective space systems regarding increasing the quality of observations or minimization of the number of the satellites required. (C) 2016 IAA. Published by Elsevier Ltd. All rights reserved.
机译:基于系列的前几篇论文所考虑的理论结果,对在该星座所有卫星上具有相同高度和倾斜度值的轨道上形成的传统单层星座,采用在轨复合卫星结构进行星座设计的方法具有不同的高度和倾斜度,并开发了同步节点回归。复合的多层卫星结构(星座)基于具有不同高度和倾斜度值的轨道,从而提供节点回归同步。结果表明,与基于星座的所有卫星具有共同的高度和倾角的轨道的传统星座相比,使用复合卫星星座进行地球周期性覆盖可以充分改善地球的覆盖范围。 ,以便为提高观测质量或最小化所需卫星的数量,为不同类型的预期空间系统提供新的星座设计机会。 (C)2016 IAA。由Elsevier Ltd.出版。保留所有权利。

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