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State-of-the-art space mission telecommand receivers

机译:最先进的太空任务遥控指令接收器

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摘要

Since their dawning, space communications have been among the strongest driving applications for the development of error correcting codes. Indeed, space-to-Earth telemetry (TM) links have extensively exploited advanced coding schemes, from convolutional codes to Reed-Solomon codes (also in concatenated form) and, more recently, from turbo codes to low-density parity-check (LDPC) codes. The efficiency of these schemes has been extensively proved in several papers and reports. The situation is a bit different for Earth-to-space telecommand (TC) links. Space TCs must reliably convey control information as well as software patches from Earth control centers to scientific payload instruments and engineering equipment onboard (O/B) spacecraft. The success of a mission may be compromised because of an error corrupting a TC message: a detected error causing no execution or, even worse, an undetected error causing a wrong execution. This imposes strict constraints on the maximum acceptable detected and undetected error rates.
机译:自从出现以来,空间通信一直是开发纠错码的最强大的驱动应用之一。实际上,空对地遥测(TM)链路已广泛使用了先进的编码方案,从卷积码到Reed-Solomon码(也为串联形式),最近从Turbo码到低密度奇偶校验(LDPC) )代码。这些方案的效率已在几篇论文和报告中得到了广泛证明。对于地对空遥控(TC)链路,情况有所不同。太空TC必须可靠地将控制信息和软件补丁从地球控制中心传送到科学有效载荷仪器和机载(O / B)航天器上的工程设备。可能由于错误破坏了TC消息而损害了任务的成功:检测到的错误导致不执行,或者更糟糕的是,未检测到的错误导致执行错误。这对最大可接受的检测到的和未检测到的错误率施加了严格的约束。

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