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New Concept of PLC Modems: Multi-Carrier System for Frequency Selective Slow-Fading Channels Based on Layered SCCC Turbocodes

机译:PLC调制解调器的新概念:基于分层SCCC Turbocode的频率选择慢衰落信道的多载波系统

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摘要

The article introduces a novel concept of a PLC modem as a complement to the existing G3 and PRIME standards for communications using medium- or high-voltage overhead or cable lines. The proposed concept is based on the fact that the levels of impulse noise and frequency selectivity are lower on high-voltage lines than on low-voltage ones. Also, the demands for “cost-effective” circuitry design are not so crucial as in the case of modems for low-voltage level. In contract to these positive conditions, however, there is the need to overcome much longer distances and to take into account low SNR on the receiving side. With respect to the listed reasons, our concept makes use of MCM, instead of OFDM. The assumption of low SNR is compensated through the use of an efficient channel coding based on a serially concatenated turbo code. In addition, MCM offers lower latency and PAPR compared to OFDM. Therefore, when using MCM, it is possible to excite the line with higher power. The proposed concept has been verified during experimental transmission of testing data over a real, 5 km long, 22kV overhead line.
机译:本文介绍了PLC调制解调器的新颖概念,作为对现有G3和PRIME标准的补充,用于使用中压或高压架空或电缆线路进行通信。提出的概念基于以下事实:高压线路上的脉冲噪声和频率选择性级别低于低压线路。同样,对“具有成本效益”的电路设计的要求并不像在低电压调制解调器中那样关键。然而,为了适应这些积极条件,需要克服更长的距离并考虑接收侧的低SNR。关于列出的原因,我们的概念使用了MCM而不是OFDM。低SNR的假设是通过使用基于串行级联Turbo码的有效信道编码来补偿的。此外,与OFDM相比,MCM提供了更低的延迟和PAPR。因此,当使用MCM时,可以用更高的功率激励线路。在一条实际的,长度为5 km,22kV架空线上进行测试数据的实验传输期间,已验证了所提出的概念。

著录项

  • 作者

    Zavrtalek J.; Kekrt D.; Hrad J.;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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