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首页> 外文期刊>Journal of power sources >Precision dynamic equivalent circuit model of a Vanadium Redox Flow Battery and determination of circuit parameters for its optimal performance in renewable energy applications
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Precision dynamic equivalent circuit model of a Vanadium Redox Flow Battery and determination of circuit parameters for its optimal performance in renewable energy applications

机译:钒氧化还原液流电池的精密动态等效电路模型和确定其在可再生能源应用中的最佳性能的电路参数

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摘要

In this work it is established for the first time that the internal parameters of the electrical equivalent circuit of vanadium redox flow battery (VRFB) are variable not only with flow rate and stack current but also the state of charge (SOC) and operational cycle number. The dynamic internal circuit parameters are extracted by using the charge-discharge characteristics of a practical 1 kW 6 h VRFB system as input to the proposed model. The role of temperature on the VRFB internal parameters is also discussed. It is further demonstrated that the average error in estimation of VRFB stack voltage using dynamic parameters reduces by 28% (charging) and 14% (discharging) compared to that of using static internal parameters. The proposed model exhibits robustness and validity for large scale applications as evidenced by further extracting the internal parameters of a 125 kW 2h VRFB system. Another significant contribution of this paper is the optimization of flow rate by considering both the stack internal power loss and pump power loss simultaneously to achieve optimal performance of the VRFB system. The proposed model involving dynamic parameter extraction and loss optimization is very useful for designing suitable battery management system (BMS) for interfacing VRFB with renewable energy sources.
机译:在这项工作中,首次确定钒氧化还原液流电池(VRFB)的等效电路的内部参数不仅随流速和堆电流而变化,而且随充电状态(SOC)和工作循环数变化。通过使用实际的1 kW 6 h VRFB系统的充放电特性作为建议模型的输入来提取动态内部电路参数。还讨论了温度对VRFB内部参数的作用。进一步证明,与使用静态内部参数相比,使用动态参数估算VRFB堆电压的平均误差降低了28%(充电)和14%(放电)。通过进一步提取125 kW 2h VRFB系统的内部参数,证明了所提出的模型对于大规模应用具有鲁棒性和有效性。本文的另一个重要贡献是通过同时考虑烟囱内部功率损耗和泵功率损耗来实现VRFB系统的最佳性能,从而优化流速。所提出的涉及动态参数提取和损耗优化的模型对于设计合适的电池管理系统(BMS)以使VRFB与可再生能源对接非常有用。

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