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Global satellite communication network using double-layered inclined-orbit constellation with optical intersatellite links

机译:使用具有卫星间光链路的双层倾斜轨道星座的全球卫星通信网络

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Abstract: A double-layered constellation for a future global satellite communications network connected by optical intersatellite links has been proposed. The constellation consists of lower layer satellites for mobile and personal satellite communications, and upper layer satellites for large- capacity fixed satellite communications and feeder links. Optical inter-satellite links, which can perform high-capacity communications with small terminals, are used for all intersatellite data transmission. Although a polar orbit constellation offers the merit of simpleness in network configurations, the inclined orbit constellation offers the potential for reducing the required number of satellites, improving link properties, and enhancing the coverage in middle and low latitudes, by selecting the most adequate inclination of the orbits. The optical inter- satellite link properties, coverage properties, and required number of satellites are evaluated for constellations using inclined orbits, and then compared with those of a polar orbit constellation. Three constellation types in each layer achieving continuous double coverage are assumed. For each constellation, the relations between these properties and the inclination of the orbits are examined. The basic parameters of optical inter-satellite links on satellite constellations using inclined orbits are also shown. !9
机译:摘要:已经提出了一种通过星际光链路连接的未来全球卫星通信网络的双层星座图。该星座由用于移动和个人卫星通信的下层卫星,以及用于大容量固定卫星通信和馈线链路的上层卫星组成。可以与小终端进行大容量通信的光学卫星间链路用于所有卫星间数据传输。尽管极地轨道星座图具有网络配置简单的优点,但通过选择最合适的倾斜度,倾斜轨道星座图具有减少所需卫星数量,改善链路特性以及增强中低纬度覆盖范围的潜力。轨道。使用倾斜轨道评估星座的光学卫星间链路特性,覆盖范围特性和所需的卫星数量,然后将其与极轨道星座的特性进行比较。假设在每层中实现连续双覆盖的三种星座类型。对于每个星座,都检查了这些特性与轨道倾角之间的关系。还显示了使用倾斜轨道的卫星星座上的光学卫星间链路的基本参数。 !9

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