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A Power Decoupling Solution for Improved Y-Source Single-Phase Grid-Connected Inverter

机译:改进型Y源单相并网逆变器的功率去耦解决方案

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This article proposes a power decoupling solution based on improved Y-source single-phase inverter with no additional power semiconductors for PV systems. Single-phase inverter would cause voltage and current ripples on DC link because of double-frequency power ripple. On the other hand, the improved Y-source inverter has a continuous input current and a high voltage gain using a small shoot-through duty ratio. As a result, the improved Y-source inverter is utilized for power decoupling instead, with only two capacitors added between the midpoint and each inverter arm. A corresponding control method is proposed to ensure the power ripple absorbed by the two decoupling capacitors without affecting the grid current. Finally, a 200W laboratory prototype is built based on a TMS320F2812 digital signal processor to verify the performance of the proposed power decoupling solution.
机译:本文提出了一种基于改进的Y源单相逆变器的功率去耦解决方案,该解决方案不存在用于光伏系统的额外功率半导体。单相逆变器会由于双频电源纹波而在直流母线上造成电压和电流纹波。另一方面,改进的Y源逆变器具有连续的输入电流和使用小直通占空比的高电压增益。结果,改进的Y源逆变器被用于功率去耦,而在中点和每个逆变器臂之间仅添加了两个电容器。提出了一种相应的控制方法,以确保两个去耦电容器吸收的功率纹波不影响电网电流。最后,基于TMS320F2812数字信号处理器构建了200W实验室原型,以验证所提出的电源去耦解决方案的性能。

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