Improved QPR Power Controller With Harmonic Compensator For Wind Grid-Connected Inverter

Sun Jian, Eid A. Amin, Zhang Yunning
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Abstract

The grid-connected inverter plays an important role in wind turbine grid-connected power generation system. The performance of inverter control strategy directly affects the grid-connected current quality. For quasi-proportional resonant(QPR) control, the output signal step of controller exists owing to the input signal step, and the grid current will be distorted by the low-frequency noise in the input signal. In order to solve these problems, the performance of quasi-PR control should be improved, so a method of constructing quasi-PR controller with two degrees of freedom is adopted, by which the improved controller can effectively suppress the influence of the step and low-frequency noise in the input signal on the grid-connected current. The improved controller is simulated on MATLAB, and the results show that the applied method can effectively improve the property of the existing problems of quasi-QPR controller and the quality of grid-connected current. Keywords: Grid-connected inverter, Harmonic compensator, Matlab/Simulation, 2-DOF,QPR. DOI: 10.7176/CTI/8-05
风电并网逆变器谐波补偿改进QPR功率控制器
并网逆变器在风力发电并网系统中起着重要的作用。逆变器控制策略的优劣直接影响并网电流质量。在准比例谐振(QPR)控制中,控制器的输出信号阶跃由于输入信号阶跃而存在,输入信号中的低频噪声会对电网电流产生畸变。为了解决这些问题,需要提高准pr控制的性能,因此采用了一种构造两自由度准pr控制器的方法,改进后的控制器可以有效地抑制输入信号中的阶跃噪声和低频噪声对并网电流的影响。在MATLAB上对改进后的控制器进行了仿真,结果表明所采用的方法能有效地改善准qpr控制器存在的问题和并网电流的质量。关键词:并网逆变器,谐波补偿器,Matlab/Simulation,二自由度,QPRDOI: 10.7176 / CTI / 8-05
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