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Power quality improvement using microsystem technology for wind power plant

机译:利用动力电厂微系统技术的电力质量改进

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Its intermittent nature and comparatively elevated capital costs impede the contribution of abundant renewable energy sources globally compared to nonrenewable sources. Intermittency makes most of the renewable energy sources to be grid connected for reliability and power quality issues, which makes economically infeasible for remote areas energy supply where standalone micro grids more preferable. The advancement of power electronics technologies also makes to have sensitive loads, which are sensitive to power fluctuations. This paper intends the application of dynamic voltage restorer (DVR) which consists of different microsystem devices to improve the power quality of wind power system during voltage fluctuation conditions of sensitive loads. Symmetrical and asymmetrical fault scenarios are tested for improving the efficiency and the quality of the power supply and compliance with the IEEE nominal voltage standards. The results of sensitive load phase voltage value presented with and without the contribution of the DVR system. The wind power generation and operation of the DVR are done using Power System Computer Aided Design or Electro Magnetic Transient Design and Control (PSCAD/EMTDC) software. The presage compensation strategy is used for controlling of the DVR and its detailed mechanism is presented. The simulation results showed the proper applicability of DVR during any voltage sag/swell conditions.
机译:它间歇性的性质和比较提高的资本成本阻碍了与不可再生来源相比全球丰富的可再生能源的贡献。间歇性使得大部分可再生能源都能成为可靠​​性和电能质量问题的电网,这对于偏远地区能量供应来说,在具有独立微电网更优选的偏远地区的能源供应可能的经济上不可行。电力电子技术的进步也具有敏感的负载,对功率波动敏感。本文旨在应用动态电压恢复器(DVR),其包括不同的微系统器件,以提高敏感负载电压波动条件期间风电系统的功率质量。测试对称和不对称故障方案,用于提高电源的效率和质量和符合IEEE标称电压标准。敏感负载相位电压值的结果,带有和没有DVR系统的贡献。 DVR的风力发电和操作是使用电力系统计算机辅助设计或电磁瞬态设计和控制(PSCAD / EMTDC)软件进行的。预设补偿策略用于控制DVR及其详细机制。仿真结果表明,DVR在任何电压凹槽/膨胀条件下的适当适用性。

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