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Synchronous DC link voltage control for microinverters with minimum DC link capacitance

机译:具有最小直流母线电容的微型逆变器的同步直流母线电压控制

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This paper investigates DC link capacitor optimization for three-phase photovoltaic (PV) based microinverters. This concept minimizes the storage capacitance by allowing greater voltage ripple on the DC link. Therefore, the microinverter reliability can be significantly increased by replacing electrolytic capacitors with film capacitors. However, this intentionally increased voltage ripple can introduce harmonic distortion on the output current of the inverter stage if it is not mitigated by the DC link voltage controller. For this purpose, a robust and accurate DC link voltage control is proposed to filter this ripple while regulating the DC link voltage without using any additional circuit components. The experimental results on a 400-W three-phase half-bridge microinverter prototype validate the theoretical analysis of the DC link capacitor optimization and show that a significant reduction of the DC link capacitor requirement can be achieved. The proposed high accuracy DC link voltage controller is also implemented on this prototype to demonstrate very low harmonic distortion of the inverter output current while tightly regulating the DC link voltage even during transients.
机译:本文研究了基于三相光伏(PV)的微逆变器的直流环节电容器优化。该概念通过允许直流母线上更大的电压纹波来最大程度地减小了存储电容。因此,通过将电解电容器替换为薄膜电容器,可以显着提高微逆变器的可靠性。但是,如果直流母线电压控制器无法缓解这种故意增加的电压纹波,则会在逆变器级的输出电流上引入谐波失真。为此目的,提出了一种鲁棒且精确的直流母线电压控制来过滤该纹波,同时调节直流母线电压,而无需使用任何其他电路组件。在400W三相半桥微逆变器原型上的实验结果验证了直流母线电容器优化的理论分析,并表明可以显着降低直流母线电容器的需求。在该原型上还实现了所建议的高精度直流母线电压控制器,以展示逆变器输出电流的极低谐波失真,同时即使在瞬态期间也能严格调节直流母线电压。

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