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Combined DC voltage control scheme for three-port energy router based on instantaneous energy balance

机译:基于瞬时能量平衡的三端口能量路由器组合直流电压控制方案

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DC voltage control is crucial for the multi-stage converter, because it contributes to reduce the DC capacitance and improve the reliability of the whole system. A combined control scheme, induding two parts, is proposed in this paper for controlling the two DC bus voltages respectively in the Energy Router. Firstly, the energy feed-forward control scheme is used to control the low voltage DC bus, which connects the dual active bridge, the inverter and the bidirectional DC/DC converter. Compared with the conventional feed-forward control scheme, the energy feed-forward control scheme considers the instantaneous energy changes of the inductors in the inverter and the DC/DC converter together. Secondly, for the high voltage DC bus, which is connected to the single-phase PWM rectifier, a new control scheme is proposed based on the energy balance relationship among the source, the load and the passive elements (the inductors and the capacitors). The proposed combined control scheme can improve obviously the transient performances of the two DC bus voltages. Simulation and experimental results have confirmed their superior performances.
机译:直流电压控制对于多级转换器至关重要,因为它有助于减小直流电容并提高整个系统的可靠性。提出了一种包含两个部分的组合控制方案,分别控制能量路由器中的两个直流母线电压。首先,能量前馈控制方案用于控制低压直流母线,该低压母线连接双有源桥,逆变器和双向DC / DC转换器。与传统的前馈控制方案相比,能量前馈控制方案同时考虑了逆变器和DC / DC转换器中电感的瞬时能量变化。其次,针对连接到单相PWM整流器的高压DC总线,基于源,负载和无源元件(电感器和电容器)之间的能量平衡关系,提出了一种新的控制方案。所提出的组合控制方案可以明显改善两个直流母线电压的暂态性能。仿真和实验结果证实了它们的优越性能。

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