带有光和微波链路的宽带中继卫星网络的错误控制编码和分组处理

B. Friedrichs, P. Wertz
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引用次数: 6

摘要

考虑一个由GEO中继卫星和LEO卫星组成的卫星网络。来自LEO卫星的宽带数据通过激光星间链路传输到GEO中继,然后通过微波下行链路传输到地面。GEO中继器作为再生中继器运行,由机载激光和微波链路之间的数字处理控制。为了实现网元之间最大程度的独立性,所有数据都经过分组处理,帧通过超帧和超帧进行封装。即使在LEO和GEO中使用了众所周知的传统错误控制编码方案,编码、分帧和重构操作之间的相互作用以及各种数据包错误率之间的关系也具有挑战性,但对性能评估至关重要。光链路的激光终端受到微振动的影响。LEO和GEO卫星的振动谱被转换成光学链路的时变离散时间模型,允许产生用于仿真目的的误差模式。仿真辅以渐近误差率预测的解析计算。到目前为止,已有的结果特别证明了数据处理算法的性能和GEO中继概念的总体性能。
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Error-control coding and packet processing for broadband relay satellite networks with optical and microwave links
A satellite network with a GEO data relay satellite and LEO satellites is considered. Broadband data from LEO satellites are transmitted via laser intersatellite link to the GEO relay and then via microwave downlink to the ground. The GEO relay is operated as a regenerative repeater, dominated by onboard digital processing between laser and microwave links. In order to achieve maximum independence between the network elements, all data is packetized and frames are encapsulated by superframes and hyperframes in several stages. Even with the usage of well-known traditional error-control coding schemes in LEO and GEO, the interaction between coding, framing and reframing operations and the relations between various packet error rates is challenging but essential for performance assessment. The laser terminals of the optical link are subjected to microvibrations. The vibration spectra of LEO and GEO satellites are converted into a time-variant discrete-time model of the optical link, allowing the generation of error patterns for simulation purposes. The simulation is supplemented with analytical calculations for the prediction of asymptotic error rates. Results available so far prove the performance of the data processing algorithms in particular and the GEO relay concept in general.
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