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Battery isolation mechanism for buck-boost battery power modules in series

机译:串联升降压电池电源模块的电池隔离机制

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Batteries in battery power modules (BPMs) are independently controlled and thus can be isolated from the battery power source without interrupting the system operation when they have been damaged, exhausted, or fully charged. At the transient of isolating, however, resonances may occur among the inductor and capacitor, leading to high voltage and current stresses on the circuit components and spikes on the output voltage. Based on the analysis on the resonant transient, an isolation mechanism is implemented on the control program to alleviate the problem. Experiments are carried out by the laboratory battery power system with four serial bi-directional buck-boost BPMs to verify the proposed isolation mechanism.
机译:电池电源模块(BPM)中的电池是独立控制的,因此可以在电池损坏,耗尽或充满电时将其与电池电源隔离,而不会中断系统运行。但是,在隔离的瞬变中,电感器和电容器之间可能会发生谐振,从而导致电路组件上的高电压和电流应力以及输出电压上的尖峰。基于对谐振瞬态的分析,在控制程序上实现了隔离机制以缓解该问题。实验是由带有四个串行双向降压-升压BPM的实验室电池电源系统进行的,以验证所提出的隔离机制。

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