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Multiple quantum well-based modulating retroreflectors for inter- and intra-spacecraft communication

机译:用于航天器之间和航天器内部通信的基于多量子阱的调制后向反射器

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Free space optics (FSO) can provide high data rates with efficient use of power. However, small platforms may not be able to support the payload requirements of a conventional FSO terminal. An alternative FSO terminal uses a modulating retro-reflector (MRR). MRRs shift most of the power, weight, and pointing requirements to one end of the link. With a MRR configuration, it is possible to establish a two-way FSO link using a single laser transmitter. The MRR terminal of these systems can be small, lightweight, and low power. The MRR maintains the small beam divergence of a conventional optical communications link, but gains the loose pointing advantage of an RF link, reducing the pointing requirements. Communication needs in space present many asymmetric scenarios in which a MRR architecture could be beneficial. This paper describes some of the current capabilities and limitations of MRR systems, as well as applications to space links. An evaluation of the radiation tolerance of modulators is presented.
机译:自由空间光学器件(FSO)可以有效利用功率来提供高数据速率。但是,小型平台可能无法满足常规FSO终端的有效负载要求。另一种FSO终端使用调制后向反射器(MRR)。 MRR将大部分功率,重量和指向要求转移到链路的一端。通过MRR配置,可以使用单个激光发射器建立双向FSO链接。这些系统的MRR端子可以体积小,重量轻且功耗低。 MRR保持了常规光通信链路的小光束发散,但获得了RF链路的宽松指向优势,从而降低了指向要求。空间中的通信需求提出了许多非对称方案,其中MRR体系结构可能会有所帮助。本文介绍了MRR系统当前的一些功能和局限性,以及空间链接的应用。提出了对调制器的辐射耐受性的评估。

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