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A Measurement and Power Line Communication System Design for Renewable Smart Grids

机译:可再生智能电网的测量与电力线通信系统设计

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摘要

The data communication over the electric power lines can be managed easily and economically since the grid connections are already spread around all over the world. This paper investigates the applicability of Power Line Communication (PLC) in an energy generation system that is based on photovoltaic (PV) panels with the modeling study in Matlab/Simulink. The Simulink model covers the designed PV panels, boost converter with Perturb and Observe (P&O) control algorithm, full bridge inverter, and the binary phase shift keying (BPSK) modem that is utilized to transfer the measured data over the power lines. This study proposes a novel method to use the electrical power lines not only for carrying the line voltage but also to transmit the measurements of the renewable energy generation plants. Hence, it is aimed at minimizing the additional monitoring costs such as SCADA, Ethernet-based or GSM based systems by using the proposed technique. Although this study is performed with solar power plants, the proposed model can be applied to other renewable generation systems. Consequently, the usage of the proposed technique instead of SCADA or Ethernet-based systems eliminates additional monitoring costs.
机译:由于电网连接已经遍布世界各地,因此可以轻松,经济地管理通过电力线进行的数据通信。本文利用Matlab / Simulink中的建模研究,研究了电力线通信(PLC)在基于光伏(PV)面板的能源发电系统中的适用性。 Simulink模型涵盖了设计的光伏面板,具有扰动和观测(P&O)控制算法的升压转换器,全桥逆变器以及用于在电源线上传输测量数据的二进制相移键控(BPSK)调制解调器。这项研究提出了一种新方法,不仅可以使用电力线来承载线路电压,而且可以传输可再生能源发电厂的测量值。因此,其目的是通过使用所提出的技术来最小化诸如SCADA,基于以太网或基于GSM的系统的额外监视成本。尽管这项研究是在太阳能发电厂进行的,但该模型可以应用于其他可再生能源发电系统。因此,使用提议的技术代替SCADA或基于以太网的系统消除了额外的监视成本。

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