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Optimal control of selective harmonic elimination in a grid-connected single-phase PV inverter

机译:并网单相光伏逆变器中选择性谐波消除的最优控制

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Photovoltaic system is one of the renewable sources of energy utilized with conventional systems to meet the increasing power demand. The topology considered is a single-phase grid-connected photovoltaic (PV) system in which the inverter unit plays an important role. Harmonic currents injected into the grid by a large number of PV inverters will downgrade the power quality of the grid and causes an increase in the total harmonic distortion (THD) at the output of the inverter. This paper focuses on the current control strategy adopted by the inverters for harmonic elimination and hence for the reduction of THD for ensuring high quality of the current injected into the grid. A control strategy based on proportional-resonant-integral (PRI) controller and their suitability for grid-connected inverter current control is presented. For selective elimination of dominant lower order harmonics in the output current an adaptive harmonic compensation technique using adaptive filter is proposed. The interaction between the adaptive filter and the PRI controller in the system is analyzed. To maintain the THD within permissible limits current controller parameters are optimized by using Genetic Algorithm (GA). The proposed system was simulated using MATLAB and the performance is analyzed and compared.
机译:光伏系统是常规系统用来满足不断增长的电力需求的可再生能源之一。所考虑的拓扑是单相并网光伏(PV)系统,其中逆变器单元扮演着重要角色。大量PV逆变器注入电网的谐波电流会降低电网的电能质量,并导致逆变器输出处的总谐波失真(THD)增大。本文着重于逆变器采用的电流控制策略,以消除谐波,从而降低THD,以确保注入电网的电流的高质量。提出了一种基于比例谐振积分(PRI)控制器的控制策略及其在并网逆变器电流控制中的适用性。为了有选择地消除输出电流中的优势低阶谐波,提出了一种使用自适应滤波器的自适应谐波补偿技术。分析了系统中自适应滤波器与PRI控制器之间的相互作用。为了将THD保持在允许的范围内,使用遗传算法(GA)对电流控制器参数进行了优化。利用MATLAB对提出的系统进行了仿真,并对性能进行了分析和比较。

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