现代有轨电车可重构储能系统中一种降低电压变化的充电策略

Baolin Zhu, Hongtao Liao, Rui Wang, Yun Jiao, Zhiwu Huang, Jun Peng
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引用次数: 0

摘要

由于电压的限制,需要将大量的超级电容器电池并联或串联起来,为有轨电车提供特定的电压水平。然而,大规模串联的超级电容器增加了直流母线的电压变化,影响了后续功率变换器级的尺寸和效率,破坏了超级电容器的能量利用率。此外,超级电容器串联时不可避免地会出现电压不平衡的问题,这使得储能系统的容量受到最弱电池的限制。为了解决上述问题,本文采用了超级电容器并联串联重构来减小电压变化。特别地,设计了一种基于共识跟踪控制的串联超级电容器电压同步平衡策略。首先,利用状态空间平均法对基于超级电容器的储能系统进行数学建模。其次,对重构规律和同步均衡策略进行了分析和设计。最后,仿真和实验结果验证了所提出的充电策略有效地抑制了直流母线的电压变化,并明显缩短了充电时的平衡时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Charging Strategy to Reduce Voltage Variation for Reconfigurable Energy Storage System of Modern Tram
Due to the voltage limitation, large number of ultracapacitor cells need to be connected in parallel and series to provide a specific voltage level for trams. However, a large scale of series-connected ultracapacitors increase the voltage variation of the DC bus, which affects the size and efficiency of the subsequent power converter stage and undermines the energy utilization of the ultracapacitor. Moreover, ultracapacitors in series-connection inevitably suffer from voltage imbalance, which limits the capacity of energy storage system by the weakest cell. To alleviate the above problems, ultracapacitor parallel-series reconfiguration is employed to reduce the voltage variation in this paper. Particularly, a synchronous equilibrium strategy based on consensus tracking control is designed for voltage balance among series-connected ultracapacitors. First, we mathematically model the ultracapacitor-based energy storage system using the state-space averaging method. Second, the law of reconfiguration and synchronous equilibrium strategy is analyzed and designed. Finally, both simulation and experiment results verify that the proposed charging strategy effectively suppresses the voltage variation of the DC bus and evidently reduces balance time during charging.
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