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A Decentralized Dynamic Load Power Allocation Strategy for Fuel Cell/Supercapacitor-Based APU of Large More Electric Vehicles

机译:大型电动汽车基于燃料电池/超级电容器的APU的分散式动态负载功率分配策略

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摘要

In this paper, an enhanced mixed droop control strategy is proposed for a fuel cell/supercapacitor-based auxiliary power unit (FC/SC-APU), which is usually used in large electric vehicles, to achieve the dynamic load power allocation in a decentralized way. By applying an adjustable virtual impedance droop scheme to the SC converter and a virtual resistor droop scheme to the FC converter, the SC is able to buffer the fast-changing or pulsating load power flow, leaving the FC only providing the average load power. Since this method is fully decentralized, it features high flexibility and scalability. Furthermore, the proposed strategy is very suitable for extending the system's service life because the recovery and operational limit of the state-of-charge of SC have been considered in the power allocation. The operational principle of the proposed control strategy and the system design are elaborated, followed by which real-time simulations are conducted to verify theoretical analyses.
机译:本文针对大型电动汽车中常用的基于燃料电池/超级电容器的辅助动力装置(FC / SC-APU)提出了一种增强的混合下垂控制策略,以实现分散式环境中的动态负载功率分配道路。通过对SC转换器应用可调的虚拟阻抗下降方案,并对FC转换器应用虚拟电阻下降方案,SC能够缓冲快速变化或脉动的负载功率流,而FC仅提供平均负载功率。由于此方法是完全分散的,因此具有高度的灵活性和可伸缩性。此外,所提出的策略非常适合延长系统的使用寿命,因为在功率分配中已经考虑了SC充电状态的恢复和运行极限。阐述了所提出的控制策略的工作原理和系统设计,然后进行了实时仿真以验证理论分析。

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