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Frequency-Adaptive Filtering of Low-Frequency Harmonic Current in Fuel Cell Power Conditioning Systems

机译:燃料电池功率调节系统中低频谐波电流的频率自适应滤波

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摘要

Based on one of the most researched multiinput dc-dc converter topologies for renewable energy systems, the multi-input dual-active bridge (DAB) dc-dc converter, the effectiveness of harmonic current absorption by the energy storage branch in fuel cell power conditioning systems is critically evaluated. The closed-loop output impedances of the converter under single-voltage-loop and dual-loop controls are derived and compared. It is shown that both control strategies can effectively reduce the converter’s closed-loop output impedance, thus favoring the flow of harmonic current and prevent it from being drawn from either the fuel cell branch or the dc-link capacitor. However, as shown by experimental results, the use of conventional PI control alone still produces noticeable voltage ripple on the dc voltage bus due to harmonic current being drawn from the dc-link capacitor. Proportional-resonant control is proposed to effectively compensate for the dc-bus voltage variation by generating an extremely low impedance path for harmonic current flow at specific frequency. An analog-based frequency tracking circuit is further proposed to adjust the resonant frequency for compensating the effect of harmonic frequency variation.
机译:基于针对可再生能源系统的研究最多的多输入DC-DC转换器拓扑之一,多输入双有源电桥(DAB)DC-DC转换器,燃料电池电源调节中的储能分支吸收谐波电流的有效性系统得到严格评估。推导并比较了在单电压环路和双环路控制下转换器的闭环输出阻抗。结果表明,两种控制策略都可以有效降低转换器的闭环输出阻抗,从而有利于谐波电流的流动,并防止谐波电流从燃料电池分支或直流母线电容器中汲取。但是,如实验结果所示,由于从直流链路电容器汲取了谐波电流,因此仅使用常规PI控制仍会在直流电压总线上产生明显的电压纹波。为了在特定频率下产生谐波电流的极低阻抗路径,提出了比例谐振控制来有效补偿直流总线电压变化。进一步提出了一种基于模拟的频率跟踪电路来调节谐振频率,以补偿谐波频率变化的影响。

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