MIMO systems design for narrowband power line communication in smart distribution grids

T. Papadopoulos, A. Chrysochos, G. Papagiannis
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Abstract

In this chapter, data transmission in smart distribution grids (SDGs) is analyzed by means of multiple-input multiple-output (MIMO) narrowband (NB) power-line communication (PLC) systems, by applying orthogonal frequency-division multiplexing (OFDM) encoding. Regarding NB-PLC physical layer (PHY) modeling, multiconductor transmission line (MTL) theory is used for distribution lines channel characterization, whereas a measurement-based black-box method is adopted to characterize the medium-voltage (MV) to low-voltage (LV) path through the distribution transformers (DTs). OFDM bit-loading and transmit energy optimization processing techniques are applied across the OFDM subchannels of the spatial beams to improve the achievable data rates at the network nodes. Different scenarios are conducted to systematically evaluate the achievable data rates, revealing the possibility for an extensive and reliable application of NB-PLC communications in SDGs.
智能配电网窄带电力线通信MIMO系统设计
本章采用正交频分复用(OFDM)编码,分析了多输入多输出(MIMO)窄带电力线通信(PLC)系统在智能配电网(sdg)中的数据传输。在NB-PLC物理层(PHY)建模中,配电线路通道表征采用多导体传输线(MTL)理论,而通过配电变压器(dt)的中压(MV)到低压(LV)通道表征采用基于测量的黑盒方法。在空间波束的OFDM子信道上应用OFDM位加载和传输能量优化处理技术,以提高网络节点上可实现的数据速率。通过不同的场景,系统地评估了可实现的数据速率,揭示了NB-PLC通信在可持续发展目标中广泛可靠应用的可能性。
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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