Optical system architecture design of multiple apertures array antenna for satellite-to-ground optical communication

Jingyi He
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引用次数: 2

Abstract

In satellite-to-ground laser communication links, atmospheric turbulence has a strong influence on communication quality, and a communication link is difficult to establish or break even in strong turbulence. Large aperture optical antenna not only manufacturing costs a lot, but also many factors including volume have to be limited, at the same time the system would be difficult to repaired when satellite platform antenna in space complex environment is failure, so it is a viable solution that multiple small apertures array antenna is place of large-aperture antenna in the future. In order to cope with the effects of atmospheric turbulence and ensure system stability and reliability, in this paper we designed a kind of receiving/transmitting array antenna composed of several small aperture telescopes combined with space diversity, and analyzed far-field intensity distribution according to Huygens -Fresnel theory.
星地光通信多孔径阵列天线光学系统结构设计
在星地激光通信链路中,大气湍流对通信质量影响较大,即使在强湍流中,通信链路也难以建立或中断。大口径光学天线不仅制造成本高,而且受到体积等诸多因素的限制,同时卫星平台天线在空间复杂环境下出现故障时系统难以修复,因此用多小孔径阵列天线代替大口径天线是未来可行的解决方案。为了应对大气湍流的影响,保证系统的稳定性和可靠性,本文设计了一种由多台小口径望远镜结合空间分集组成的接收/发射阵列天线,并根据惠更斯-菲涅耳理论分析了远场强度分布。
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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