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Closed-Loop Control of DC–DC Dual-Active-Bridge Converters Driving Single-Phase Inverters

机译:驱动单相逆变器的DC-DC双有源桥转换器的闭环控制

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摘要

A solid-state transformer (SST) is a high-frequency power electronic converter that is used as a distribution power transformer. A common three-stage configuration of an SST consists of ac–dc rectifier, isolated dc–dc dual-active-bridge (DAB) converter, and dc–ac inverter. This study addresses the controller design issue for a dc–dc DAB converter when driving a regulated single-phase dc–ac inverter. Since the switching frequency of the inverter stage is much higher than that of the DAB stage, the single-phase inverter is modeled as a double-line-frequency (e.g., 120 Hz) current sink. The effect of 120-Hz current by the single-phase inverter is studied. The limitation of a PI-controller, low gain at 120 Hz, is investigated. Two methods are proposed to improve the regulation of the output voltage of DAB converters. The first one uses a bandstop filter and feedforward, while the second method uses an additional proportional-resonant controller in the feedback loop. Theoretical analysis, simulation, and experiment results are provided.
机译:固态变压器(SST)是用作配电电源变压器的高频功率电子转换器。 SST的常见三阶段配置包括交流-直流整流器,隔离式直流-直流双有源桥(DAB)转换器和直流-交流逆变器。本研究解决了驱动稳压单相dc-ac逆变器时dc-dc DAB转换器的控制器设计问题。由于逆变器级的开关频率比DAB级的开关频率高得多,因此将单相逆变器建模为双线频率(例如120Hz)电流吸收器。研究了单相逆变器对120 Hz电流的影响。研究了PI控制器的局限性,即120 Hz下的低增益。提出了两种方法来改善DAB转换器输出电压的调节。第一种方法使用带阻滤波器和前馈,而第二种方法在反馈环路中使用附加的比例谐振控制器。提供理论分析,仿真和实验结果。

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