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Neutral inductive coupling for improved underground medium voltage BPLC

机译:中性电感耦合以改善地下中压BPLC

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In the underground MV BPLC systems, the inductive coupler has been mainly used being clamped around the MV power cable. But the high current on the MV power line causes the magnetic saturation of the inductive coupler, so the quality of coupling could be gone down. To solve this problem, we suggest that the neutral line of the underground MV power line can be used for the coupling as a communication medium, and we have newly developed a inductive coupler with loss less than 5 dB for the underground MV neutral line and experimentally assessed it. For the purpose of evaluating the coupler, we had constructed the underground MV BPLC test bed that has the 9 repeating points with the 200 Mbps class BPLC repeaters. The length of the test bed is about 836 m. It is located in Ansan-city, Korea. We have measured the transmitted signal attenuation and TCP data rate as the factors of the performance evaluation where the TCP data rate means the data rate over TCP layer. The results measured about the existing inductive coupler and the new one have been compared, and the results measured according to the inductive coupling methods included the neutral line coupling method have also compared. As a result, the suggested coupling method and the newly developed inductive coupler have not only the good performance, but also the cost effectiveness because of the fact that there is no magnetic saturation problem and its small size. Therefore, when we consider the cost effective communication infrastructure for Smart Grid, we can say that the underground MV BPLC system is still attractive.
机译:在地下MV BPLC系统中,电感耦合器主要用于夹在MV电源电缆周围。但是中压电力线上的高电流会导致电感耦合器的磁饱和,因此耦合质量可能会下降。为了解决这个问题,我们建议将地下中压电力线的中性线用作耦合介质,并且我们新开发了一种电感耦合器,其对地下中压中性线的损耗小于5 dB,并进行了实验评估它。为了评估耦合器,我们构建了具有9个重复点和200 Mbps BPLC中继器的地下MV BPLC测试台。试验台的长度约为836 m。它位于韩国安山市。我们已经测量了传输信号的衰减和TCP数据速率作为性能评估的因素,其中TCP数据速率表示TCP层上的数据速率。比较了有关现有电感耦合器和新电感耦合器的测量结果,并比较了根据电感耦合方法(包括中性线耦合方法)测量的结果。结果,由于不存在磁饱和问题并且其尺寸小,所以所提出的耦合方法和新开发的电感耦合器不仅具有良好的性能,而且具有成本效益。因此,当我们考虑智能电网具有成本效益的通信基础设施时,可以说地下MV BPLC系统仍然具有吸引力。

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