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Selective relaying for reliability in power line cooperative communication system

机译:电力线协同通信系统中可靠性的选择性中继

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Power line communication (PLC), a technology that uses the existing infrastructure for electric power for the provision of data, is fast becoming the choice for smart grid system. As good a choice as the PLC is for smart grid applications, it has some characteristics that poses hazards to signal transmitted through it. The topology of the power network (star) poses challenges of attenuation and multipath to high-speed signal transmission. The noise in PLC is not only AWGN as in other communication system but also impulsive. In this paper, selective relaying is considered for improving the reliability of the power line cooperative communication system. Selective relaying was implemented in both amplify-and-forward and decode and forward links on the PLC. Best channel SNR was the selection criterion for the best relay. Performances of symbol error rate and channel capacity was compared for fixed and selective relaying cooperation on the PLC system. Over a specified SNR range, the selective amplify-and-forward achieved a 6% SER improvement over the fixed relaying, while 1% SER improvement was achieved by the selective relaying over the fixed relaying on the decode-and-forward link. The channel capacity performance comparison reveals that the selective relaying in all scenarios in PLC achieved appreciable improvement on both cooperative protocols than in the fixed relaying.
机译:电力线通信(PLC)是一种使用现有基础设施来提供数据的电力的技术,正迅速成为智能电网系统的选择。与PLC在智能电网应用中的选择一样,它具有某些特性,会对通过其传输的信号造成危害。电力网络(星形)的拓扑结构对高速信号传输提出了衰减和多径的挑战。 PLC中的噪声不仅是其他通信系统中的AWGN,而且是脉冲性的。在本文中,考虑选择中继来提高电力线协作通信系统的可靠性。在PLC上的放大和转发以及解码和转发链接中都实现了选择性中继。最佳信道SNR是最佳中继的选择标准。比较了PLC系统上固定和选择性中继协作的符号错误率和通道容量的性能。在指定的SNR范围内,选择性放大转发比固定中继提高了6%的SER,而通过在解码转发链路上选择性固定中继上的选择性中继实现了SER的1%改善。通道容量性能的比较表明,在PLC的所有方案中,选择性中继在两种协作协议上都比固定中继显着改善。

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