大多数曼彻斯特解码为主动冗余数据传输

T. Sauter, N. Kerö
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引用次数: 4

摘要

可靠的实时数据传输应该能够容忍瞬态故障和线路故障。前者很容易通过采用适当的错误控制编码来处理,而后者则需要多条传输线。传统的方法是使用一个活动通道和几个备用通道。然而,通过多个馈电和实现有源冗余接收器利用所有可用通道,可以从线路故障中立即恢复。我们研究了基于双重纠错bch码的数据传输系统的接收器结构,该系统具有底层曼彻斯特线编码和三个并行数据链路。在总体错误处理能力方面,比较了实现多数投票策略的不同方法。因此,我们将提出一种称为多数曼彻斯特解码器的最佳结构,只需要适度的实现开销。
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Majority Manchester decoding for active redundant data transmission
Reliable real time data transmission ought to be able to tolerate both transient faults and line failures. The former are readily dealt with by employing appropriate error control coding, whereas the latter require multiple transmission lines. The conventional approach is to use one active and several standby channels. However, utilizing all available channels through multiple feeding and implementing active redundant receivers allows instantaneous recovery from line failures. We investigate such receiver structures for a data transmission system based on a double-error correcting BCH-code with underlying Manchester line coding and three parallel data links. Different approaches for implementing majority voting strategies are compared with respect to overall error handling capabilities. As a result we will propose an optimal structure called majority Manchester decoder requiring only moderate implementation overhead.
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