Empirical modeling of the narrowband Power Line Communication channel

H. Gassara, F. Rouissi, A. Ghazel
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引用次数: 6

Abstract

This paper proposes an analytical model of the indoor Low-Voltage (LV) narrowband Power Line Communication (PLC) channel in the frequency range from 10 to 500 kHz. After the experimental demonstration of the frequency selective attenuation and the non-linear phase response of the PLC channel, a multipath transmission channel model is described by the superposition of delayed and attenuated propagation paths echoes. The low-frequency power line cable attenuation is linearly approximated based on two-conductor Transmission Line (TL) theory and field measurements. The Matrix Pencil (MP) algorithm is used for the model parameters identification and allows, with a quick convergence and a very low residual error, to detect the dominant propagation paths number as well as their corresponding weighting factors and delays. The proposed model, which is defined for any topology with a limited set of parameters, is validated through experimental measurements in the CENELEC/FCC/ARIB bands.
窄带电力线通信信道的经验建模
本文提出了10 ~ 500khz范围内室内低压(LV)窄带电力线通信(PLC)信道的解析模型。在实验证明了PLC信道的频率选择性衰减和非线性相位响应后,用延迟和衰减传播路径回波叠加的方法描述了多径传输信道模型。基于两导体传输线理论和现场实测,对低频电力线电缆的衰减进行了线性近似。采用矩阵铅笔(Matrix Pencil, MP)算法进行模型参数辨识,该算法收敛速度快,残差很小,可以检测出优势传播路径数及其对应的权重因子和时延。该模型适用于任何具有有限参数集的拓扑结构,并通过在CENELEC/FCC/ARIB波段的实验测量进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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