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Design and Analysis of a Microgrid with a PMBLDC Generator Based WECS and Solar-PV with Decoupled Real and Reactive Power Control Strategy

机译:基于PMBLDC发电机的MicroGrid与太阳能光伏的微电网与耦合实际和无功控制策略的设计与分析

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This paper presents the design of a micro-grid with permanent magnet brushless DC (PMBLDC) generator based wind energy conversion system (WECS) and Solar PV along with stand-alone loads. The output of the PMBLDC is converted to a controlled DC bus voltage using a PWM rectifier through which independent real and reactive power control are achieved. This DC bus is common to both solar PV and WECS. A Simulink model for the Solar PV Array is created and the output voltage is regulated to match up to the DC bus voltage using a DC-DC converter. A Hysteresis band pulse width modulation technique sends gating signals to the devices of the common inverter, which controls real and reactive powers and thereby achieving power factor control at the grid/load end. The entire system is modelled and simulated in MATLAB/Simulink environment. The presented results demonstrate the excellent performance of the micro-grid under different operating conditions.
机译:本文介绍了基于永磁无刷直流(PMBLDC)的风能转换系统(WECS)和太阳能光伏装的微电网的设计以及独立载荷。使用PWM整流器通过该PWM整流器转换为受控的直流母线电压,通过该PWM整流器实现了独立的实际和无功功率控制。该直流总线对于太阳能光伏和WEC而言是通用的。创建太阳能光伏阵列的模拟模型,并使用DC-DC转换器调节输出电压以匹配直流母线电压。磁滞带脉冲宽度调制技术将门控信号发送到公共逆变器的器件,其控制实际和无功功率,从而在网格/负载端实现功率因数控制。在MATLAB / SIMULINK环境中建模和模拟整个系统。所提出的结果证明了在不同的操作条件下微电网的优异性能。

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