基于逆克拉克变换的三相逆变器控制方法

S. Riyadi
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引用次数: 6

摘要

光伏(PV)-电网系统集成了光伏组件和电网产生的电能。由于光伏特性,需要一个最大功率点跟踪器(MPPT)。它将迫使光伏组件在直流电压下产生最大功率。需要一个逆变器将直流电压转换成交流电压并与电网电压相匹配。用于有源滤波的标准逆变器拓扑结构具有注入谐波和无功分量的功能,但它必须能够在光伏电网系统中传输有功分量。瞬时功率概念由于其简单性,常用于控制有源功率滤波器。本文提出了一种三相三腿逆变器的控制方法。这是基于逆克拉克变换。逆变器由电压源逆变器(VSI)实现,VSI通过使用电流控制器作为受控电流源进行操作。逆变器输出电流将与逆克拉克变换产生的参考电流进行比较。为了达到功率平衡,直流链路的电压保持恒定。所得结果证明,光伏组件产生的所有电力都可以传输到电网中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inverse Clarke Transformation based control method of a three-phase inverter for PV-Grid systems
A photovoltaic (PV)-Grid System integrates electric energy generated by PV modules and a grid. A Maximum Power Point Tracker (MPPT) is required due to PV characteristic. It will force the PV modules produce maximum power in the DC voltage. It is needed an inverter to convert DC into AC voltage and to match the grid voltage. A standard inverter topology used in active filtering is functioned to inject harmonic and reactive power components but it must be able to transmit active power component in PV-Grid System. Instantaneous power concept is often used to control an active power filter due to its simplicity. In this paper, a control method for a three-phase three-legs inverter is proposed. This is based on inverse Clarke Transformation. The inverter is implemented by Voltage Source Inverter (VSI) that is operated as a controlled current source by using a current controller. Inverter output currents will be compared to references produced by inverse Clarke Transformation. To achieve power equilibrium, the voltage of the DC-link is kept constant. The obtained results have proven that all the power generated by the PV modules can be transmitted into the grid.
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