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Modeling and Design of Series Voltage Compensator for Reduction of DC-Link Capacitance in Grid-Tie Solar Inverter

机译:降低并网型太阳能逆变器直流环节电容的串联电压补偿器的建模与设计

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摘要

A grid-tie solar inverter with a series voltage compensator for reducing the high-voltage dc-link capacitance is presented. The compensator obtains energy from the dc link to sustain the voltage on its dc side and generates an ac voltage to counteract the voltage ripple on the dc link. As the compensator processes small ripple voltage on the dc link and reactive power, it can be implemented with low-voltage devices, and thus, its volt-amp rating is small. As the required energy storage of the dc link, formed by a reduced value of the dc-link capacitor and the compensator, is reduced, the architecture allows replacing popularly used electrolytic capacitors with alternatives of longer lifetime, such as power film capacitors, or extending the system lifetime even if there is a significant reduction in the capacitance of electrolytic capacitors due to aging. Detailed mathematical analysis on the static and dynamic behaviors of the overall system, and the control method will be presented. A simplified design procedure for the compensator will be given. A 2-kW, 220-V, 50-Hz prototype has been built and evaluated. The theoretical predictions are compared favorably with experimental results. Finally, the implementation cost with electrolytic-capacitor and compensator for the dc link will be compared.
机译:提出了一种带有串联电压补偿器的并网型太阳能逆变器,用于减小高压直流链路电容。补偿器从直流链路获取能量以维持其直流侧的电压,并生成一个交流电压以抵消直流链路上的电压纹波。由于补偿器在直流链路上处理小的纹波电压和无功功率,因此可以用低压设备实现,因此其伏安额定值很小。由于减少了由直流母线电容器和补偿器的减小值形成的直流母线所需的能量存储,因此该架构允许用更长寿命的替代品(例如功率薄膜电容器)代替常用的电解电容器,或者扩展即使由于老化导致电解电容器的电容大大降低,系统的使用寿命也是如此。将对整个系统的静态和动态行为进行详细的数学分析,并给出控制方法。将给出补偿器的简化设计程序。已构建并评估了2kW,220V,50Hz的原型。理论预测与实验结果进行了比较。最后,将比较电解电容器和补偿器对直流链路的实施成本。

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