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Digital Power Factor Control And Reactive Power Regulation For Grid-connected Photovoltaic Inverter

机译:并网光伏逆变器的数字功率因数控制和无功调节

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The overall efficiency of photovoltaic (PV) systems connected to the grid depends on the efficiency of direct current (DC) of the solar modules to alternate current (AC) inverter conversion. The requirements for inverter connection include: maximum power point, high efficiency, control power injected into the grid, high power factor and low total harmonic distortion of the currents injected into the grid. An approach to power factor control and reactive power regulation for PV systems connected to the grid using field programmable gate array (FPGA) is proposed. According to the grid demands; both the injected active and reactive powers are controlled. In this paper, a new digital control strategy for a single-phase inverter is carried out. This control strategy is based on the phase shift between the inverter output voltage and the grid voltage, and the digital sinusoidal pulse width modulation (DSPWM) patterns, in order to control the power factor for a wide range of the inverter output current and consequently the control and the regulation of the reactive power will be achieved. The advantage of the proposed control strategy is its implementation around simple digital circuits. In this work, a simulation study of this strategy has been realized using Matlab/Simulink and PSIM. In order to validate its performance, this control has been implemented in a FPGA. Experimental tests have been carried out demonstrating the viability of this control in order to control the power factor and the injected power into the grid.
机译:连接到电网的光伏(PV)系统的整体效率取决于太阳能模块的直流(DC)到交流(AC)逆变器转换的效率。逆变器连接的要求包括:最大功率点,高效率,注入电网的控制功率,注入电网的电流的高功率因数和低总谐波失真。提出了一种使用现场可编程门阵列(FPGA)对连接至电网的光伏系统进行功率因数控制和无功功率调节的方法。根据电网需求;注入的有功功率和无功功率均受到控制。本文提出了一种新的单相逆变器数字控制策略。该控制策略基于逆变器输出电压和电网电压之间的相移以及数字正弦脉冲宽度调制(DSPWM)模式,以便控制大范围逆变器输出电流的功率因数,从而控制功率因数。控制和无功功率的调节将得以实现。所提出的控制策略的优点是其围绕简单数字电路的实现。在这项工作中,已经使用Matlab / Simulink和PSIM对这种策略进行了仿真研究。为了验证其性能,此控制已在FPGA中实现。为了控制功率因数和注入电网的功率,已经进行了表明该控制系统可行性的实验测试。

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