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A Decentralized Control Strategy for Autonomous Transient Power Sharing and State-of-Charge Recovery in Hybrid Energy Storage Systems

机译:混合储能系统中自主暂态功率共享和充电状态恢复的分散控制策略

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摘要

This paper proposes a decentralized power management strategy for hybrid energy storage systems to achieve transient power sharing and state-of-charge (SoC) recovery simultaneously. A virtual capacitance droop control strategy with an autonomous SoC recovery loop is proposed for energy storage (ES) with fast dynamic response, and the conventional virtual resistance droop control method is employed to regulate ES with slow dynamic response. The hybrid battery/supercapacitor (SC) system is taken as an application example. With the proposed method, load power is autonomously split into high-frequency and low-frequency parts to be compensated by SC and battery. Meanwhile, SC SoC is automatically recovered and this enables continuous operation of the SC as a power buffer without mode change or performance tradeoff. A design guideline is developed to ensure desired transient power sharing dynamics and SoC recovery with negligible interactions. Both simulations and experiments are conducted to validate the effectiveness of the proposed strategy and analytical results.
机译:本文提出了一种混合动力储能系统的分散电源管理策略,以同时实现瞬态功率共享和充电状态(SoC)恢复。针对具有快速动态响应的储能(ES),提出了具有自主SoC恢复环路的虚拟电容下降控制策略,并采用传统的虚拟电阻下降控制方法来调节动态响应较慢的ES。混合电池/超级电容器(SC)系统作为应用示例。利用所提出的方法,将负载功率自动分为高频和低频部分,由SC和电池进行补偿。同时,SC SoC会自动恢复,这使得SC可以作为电源缓冲器连续运行,而无需模式更改或性能折衷。制定了设计指南以确保所需的瞬态功率共享动态和SoC的恢复具有可忽略的相互作用。进行仿真和实验以验证所提出策略和分析结果的有效性。

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