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Coordinative impedance damping control for back-to-back converter in solar power integration system

机译:太阳能集成系统中背靠背转换器的协调阻抗阻尼控制

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摘要

The back-to-back topology of dual active bridges DC/DC converter cascaded with DC/AC inverter has been widely used in solar power integration system. The output impedance of DAB converter will interact with the input impedance of inverter, and without proper design, stability degradation will be engaged. Against the impedance interaction caused stability degradation problems, typical solution is to modify converter's impedance feature through control strategies, named as active solution, but conventional active solutions solely pay attention to single individual converter. Here, a coordinative impedance active damping control method is proposed, which simultaneously modifies the front DAB and rear inverter impedances, promoting a more stable manner. This article compares the proposed control with conventional individual impedance damping control methods. The impedance-based stability evaluations show that the proposed control can prompt DC-link connected converters to perform resistive impedance in the low-frequency band, thus the impedance interaction will be more damped, which contributes to an enhanced stability and dynamics. The effectiveness of the proposed control has been tested by both simulation and experiment results.
机译:级联DC / AC逆变器的双有源桥DC / DC转换器的背靠背拓扑已广泛用于太阳能集成系统中。 DAB转换器的输出阻抗将与逆变器的输入阻抗相互作用,如果设计不当,则会导致稳定性下降。针对由阻抗相互作用引起的稳定性下降的问题,典型的解决方案是通过控制策略来修改转换器的阻抗特性,称为有源解决方案,但是传统的有源解决方案仅关注单个转换器。在这里,提出了一种协调阻抗主动阻尼控制方法,该方法同时修改了前DAB和后逆变器的阻抗,从而促进了更稳定的方式。本文将建议的控制与常规的单个阻抗阻尼控制方法进行了比较。基于阻抗的稳定性评估表明,所提出的控制可以促使直流母线连接的转换器在低频频段执行电阻性阻抗,因此阻抗相互作用将得到更大的抑制,从而有助于增强稳定性和动态性。仿真和实验结果均验证了所提出控制方法的有效性。

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