Spatial Geometry Design of a Low Earth Orbit Constellation for Iranian Regional Navigation Satellite System

IF 0.9 Q3 ENGINEERING, AEROSPACE
R. Zardashti, Shiva Emami
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引用次数: 1

Abstract

The regional navigation satellite system (RNSS) is recently used in some countries to cover or enhance their local navigation. The most important satellite navigation systems to date are in the Earth medium orbit (MEO) and Earth synchronous Earth orbit (GEO), which are characterized by big satellites, and high launch, construction, and operation costs. In contrast, low Earth orbit (LEO) small-satellite constellations have recently become attractive because of their advantages, such as a significant reduction in system cost, an increase in communication volume, and a reduction in latency. Therefore, in this study, the spatial geometry of a LEO constellation is designed for Iran to increase the required regional navigation performance. For this purpose, the optimal constellation configuration is obtained through a multi-objective genetic algorithm (MOGA) utilizing a cost function with a combination of the geometry dilution of precision (GDOP), the number of satellites, and orbital height in the form of a design procedure. Moreover, reducing the feasible region of longitude of the ascending nodes of orbit planes is applied in the design process to reduce the search space. The simulation results indicate the constellation designed performance.
伊朗区域卫星导航系统近地轨道星座空间几何设计
区域导航卫星系统(RNSS)最近在一些国家被用于覆盖或增强其本地导航。迄今为止,最重要的卫星导航系统是地球中轨道(MEO)和地球同步轨道(GEO),其特点是卫星体积大,发射、建造和运营成本高。相比之下,近地轨道(LEO)小型卫星星座最近变得很有吸引力,因为它们具有显著降低系统成本、增加通信量和降低延迟等优势。因此,在本研究中,低轨卫星星座的空间几何形状是为伊朗设计的,以提高所需的区域导航性能。为此,通过多目标遗传算法(MOGA),利用成本函数,结合几何精度稀释(GDOP)、卫星数量和轨道高度,以设计程序的形式,获得最佳星座配置。此外,在设计过程中,还采用了减小轨道平面上升节点经度的可行区域的方法来减少搜索空间。仿真结果表明了星座设计的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.00
自引率
0.00%
发文量
16
审稿时长
20 weeks
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