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Wireless optical communications for intra-spacecraft networks based on OCDMA with random optical codes

机译:基于OCDMA的具有随机光码的航天器内部网络无线光通信

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摘要

In recent years, spacial agencies have shown a growing interest in optical wireless as an alternative to wired and radio-frequency communications [1,2]. The use of these techniques for intra-spacecraft communications reduces the effect of take-off acceleration and vibrations on the systems by avoiding the need for rugged connectors and provides a significant mass reduction. Diffuse transmission also eases the design process as terminals can be placed almost anywhere without a tight planification to ensure the proper system behaviour. Previous studies [3,4] have compared the performance of radio-frequency and infrared optical communications. In an intra-satellite environment optical techniques help reduce EMI related problems, and their main disadvantages - multipath dispersion and the need for line-of-sight - can be neglected due to the reduced cavity size. Channel studies [5] demonstrate that the effect of the channel can be neglected in small environments if data bandwidth is lower than some hundreds of MHz.
机译:近年来,空间机构对光无线作为有线和射频通信的替代方案表现出越来越浓厚的兴趣[1,2]。通过避免使用坚固的连接器,这些技术在航天器内部通信中的使用减少了起飞加速和振动对系统的影响,并显着降低了质量。漫射传输还简化了设计过程,因为无需严格规划即可将终端几乎放置在任何地方,以确保正确的系统性能。先前的研究[3,4]比较了射频和红外光通信的性能。在卫星内部环境中,光学技术有助于减少与EMI相关的问题,并且由于减小的腔体尺寸,其主要缺点(多径色散和对视线的需要)可以忽略不计。信道研究[5]表明,如果数据带宽低于几百MHz,则在较小的环境中可以忽略信道的影响。

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