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ISSN 1671-0940

CN 11-4673/V

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中国航天 ›› 2019, Vol. 20 ›› Issue (2): 12-23.doi: 10.3969/j.issn.1671-0940.2019.02.002

• 学术研究 • 上一篇    下一篇

Ground Application System Design for Future Q/V-band Very High-Throughput Satellite

  

  • 出版日期:2019-06-19 发布日期:2019-06-19

Ground Application System Design for Future Q/V-band Very High-Throughput Satellite

LI Xinhua, LI Jinlin, WANG Xinrong, ZHANG Lei   

  1. Space Star Technology Co. Ltd., CAST, Beijing 100094
  • Online:2019-06-19 Published:2019-06-19
  • About author:LI Xinhua (1978- ), received his Master’s degree from the China Academy of Space Technology, Beijing. As a senior satcom engineer, he is now working at Space Star Technology Company, Ltd. He is engaged in work related to research on high throughput satellite communications and its application service.

Abstract: Over the next decade,Very High-Throughput Satellite (VHTS) will bring enough capacity to serve high speed internet and in-flight connectivity markets at scale, offering fiber-like services both in terms of price and speed. In this context, a generic VHTS mission utilizing Q/V-band feeder links and Ka-band user links is described. However, the rain attenuation on the feeder links becomes a limiting issue because of the higher frequencies. Toward this, an exploitation of multiple gateways (GWs) as a transmit diversity measure for overcoming severe propagation effects are being considered. Ground Application System (GAS) design of VHTS is illustrated including N+P GWs (N active and P redundant GWs) diversity, frequency plan, link budget and system capacity.

Key words: ground application system, Q/V-band, VHTS, gateway diversity, N+P scheme