A Single-Phase Grid-Connected PV Microinverter With Very Low DC Bus Capacitance, Low THD, and Improved Transient Response

Farshad Bahraini, A. Abrishamifar, A. Rahmati
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引用次数: 1

Abstract

Harmonics and decrease in power factor occur in single-phase photovoltaic microinverters because the DC bus voltage exhibits a double frequency ripple. In order to reduce this ripple, large electrolytic capacitors which have short lifetimes are often used at the DC bus. To increase the lifetime of microinverters, it is necessary to replace electrolytic capacitors with thin film capacitors which have long lives and low capacitance. The trade-off between the output current THD and the bus voltage overshoot cannot be addressed with the ordinary bus voltage controller (PI) as reduction in bus capacitance leads to increase in the amplitude of the double frequency ripple on the bus voltage. In this paper, by using the proposed control method, a microinverter is designed and simulated so that this trade-off has been solved without using additional hardware. This microinverter is connected to the grid (220 V, 50 Hz). It has a very small 20 μF bus capacitor. The bus voltage has a negligible overshoot in response to an input power step of 200 W. THD of the injected current into the grid is 0.44% at 250 W output power. The outcomes of simulation conducted with Matlab-Simulink software confirm that the proposed method is effective.
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具有极低直流母线电容、低THD和改进瞬态响应的单相并网光伏微型逆变器
由于直流母线电压呈现双频纹波,单相光伏微逆变器会产生谐波和功率因数降低。为了减少这种纹波,通常在直流母线上使用寿命短的大型电解电容器。为了提高微逆变器的使用寿命,必须用寿命长、电容小的薄膜电容器代替电解电容器。普通的母线电压控制器(PI)无法解决输出电流THD和母线电压超调之间的权衡,因为母线电容的减小会导致母线电压上双频纹波幅度的增加。在本文中,利用所提出的控制方法,设计和仿真了一个微型逆变器,从而在不使用额外硬件的情况下解决了这种权衡。这个微型逆变器连接到电网(220v, 50 Hz)。它有一个非常小的20 μF总线电容。母线电压在响应200w的输入功率步进时有一个可忽略不计的超调。在输出功率为250w时,注入电网电流的THD为0.44%。利用Matlab-Simulink软件进行了仿真,验证了该方法的有效性。
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