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Harmonic Current Suppression of Grid-Connected PV Based on PR Control Strategy

机译:基于PR控制策略的并网光伏谐波电流抑制

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The distributed power generation systems based on the renewable energy sources, such as solar photovoltaic, wind power, geothermal power, have been the focus of the world in the latest years. The grid-connected inverter is important power electronic implements, used to transfer the power from the DPGS to the public grid, and the quality of its output power has been studied a lot. The repetitive control technique based on the internal model principle, can achieve low steady-state tracking error and total harmonic distortion (THD) in AC systems, so it is widely adopted in the inverter systems. However in the practical applications, there are still some issues needs solving when using the repetitive control technique. To suppress the current distortion, a control strategy of fundamental current and harmonics controlled separately is adopted. On the synchronous rotating coordinate,????the fundamental component is direct value and the harmonic component is alternating value. Proportion-integral (PI) values above which can achieved output controller and proportion resonant (PR) controller are adopted to control the power adjustment and zero error control of harmonic restrain.
机译:近年来,基于可再生能源的分布式发电系统(例如太阳能光伏,风能,地热能)已成为世界关注的焦点。并网逆变器是重要的电力电子工具,用于将功率从DPGS传输到公共电网,并且对其输出功率的质量也进行了很多研究。基于内模原理的重复控制技术在交流系统中可以实现较低的稳态跟踪误差和总谐波失真(THD),因此在逆变器系统中得到了广泛的应用。然而,在实际应用中,使用重复控制技术仍需要解决一些问题。为了抑制电流失真,采用了分别控制基本电流和谐波的控制策略。在同步旋转坐标上,基本分量是直接值,谐波分量是交变值。采用比例积分(PI)值以上可实现输出控制器和比例谐振(PR)控制器来控制谐波抑制的功率调整和零误差控制。

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