光伏发电系统中电感耦合PLC泛在传感器网络的可行性研究

S. Tsuzuki, Y. Yamada
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引用次数: 9

摘要

简单和低成本的PLC将需要在物联网(IoT)市场中发挥作用,如无处不在的无线传感器网络。从时间连通性和获得高信噪比和稳定信道的角度出发,提出了用于kHz频段PLC的电感耦合技术。本文描述了在我们实验室安装的光伏发电系统的三个可行性研究的结果。首先,电感耦合器应用于直流电力线通道,因为它形成了一个低阻抗环路。实验证明,直流电力线提供了一个高信噪比的信道,因此简单的调制技术足以实现无处不在的PLC网络。第二个主题是使用与PLC耦合器相同的铁氧体铁芯的非接触式电源。实验表明,该电路最大可为无线传感器节点提供35mW的功率。第三个课题是一线制PLC系统在架空电缆中的应用。提出了一种合适的耦合方法,以提供低信号衰减通道。指出了光伏电力线特有的噪声特性,即有云晴天的噪声偶尔会超过无云晴天的噪声。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Feasibility study of ubiquitous sensor networks by inductively coupled PLC over PV power systems
Simple and low-cost PLC will be required to play a role in the Internet-of-Things (IoT) market such as ubiquitous wireless sensor networks. From the viewpoints of temporal connectivity and obtaining high SNR and stable channels, inductive coupling techniques for the kHz band PLC have been proposed in this paper. The results of three feasibility studies using a photovoltaic power system installed in our laboratory have been described. First, an inductive coupler is applied to the DC powerline channel, because it forms a low impedance loop circuit. It was proved that the DC power-line provided a high SNR channel, so that the simple modulation technique was enough to realize the ubiquitous PLC networks. The second topic is the contactless power supply using the same ferrite core as the PLC coupler. It has been shown that the proposed circuit could supply power of 35mW at the maximum to a wireless sensor node. The third topic is an application of the 1-wire PLC system to aerial cables. A suitable coupling method has been proposed to provide a low signal attenuation channel. The noise characteristic peculiar to photovoltaic (PV) power-line is also pointed out, that is the amount of noise on a sunny day with cloud occasionally exceeded that on a cloudless sunny day.
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