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Modelling and analysis of a power line communication system with QPSK modem for renewable smart grids

机译:使用QPSK调制解调器的可再生智能电网电力线通信系统的建模和分析

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摘要

Monitoring and metering processes are required to be performed in renewable energy conversion systems like smart grid applications of the conventional grid system. These processes concerning renewable energy sources are analyzed in this paper in order to propose a solution for solar power systems. The DC-AC conversion system proposed in this paper covers a solar power plant with a maximum power point tracking system and IGBT based three-phase inverter to generate three-phase AC line voltages. The modelled transmission line is not only used to carry the generated voltage but also to transmit the generated power rate of the solar plant in real-time. The power line communication (PLC) infrastructure employed is based on Quadrature Phase Shift Keying (QPSK) modems. In order to overlap QPSK modulated data to the three-phase transmission line at the inverter and grid sides a coupling interface is also designed in the study. The current, voltage and power data generated by the photovoltaic (PV) panels are successfully monitored over transmission lines owing to the developed system. As a result, additional monitoring costs are eliminated by using the proposed technique instead of SCADA or Ethernet-based systems.
机译:要求在可再生能源转换系统(如常规电网系统的智能电网应用程序)中执行监视和计量过程。本文分析了与可再生能源有关的这些过程,以便为太阳能系统提出解决方案。本文提出的DC-AC转换系统涵盖具有最大功率点跟踪系统的太阳能发电厂和基于IGBT的三相逆变器,以产生三相AC线电压。建模的传输线不仅用于承载所产生的电压,而且用于实时传输太阳能设备的所产生的电价。所采用的电力线通信(PLC)基础设施基于正交相移键控(QPSK)调制解调器。为了使QPSK调制数据与逆变器和电网侧的三相传输线重叠,在研究中还设计了耦合接口。由于开发了系统,光伏(PV)面板生成的电流,电压和功率数据已通过传输线成功监控。结果,通过使用所提出的技术代替基于SCADA或基于以太网的系统,消除了额外的监视成本。

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