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Online monitoring of state of charge and capacity loss for vanadium redox flow battery based on autoregressive exogenous modeling

机译:基于自回归外生建模的钒氧化还原液流电池充电状态和容量损失在线监测

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摘要

Accurate monitoring of state of charge (SOC) and capacity loss is critical for the management of vanadium redox flow battery (VRB) system. This paper proposes a novel autoregressive exogenous model for the vanadium redox flow battery, based on which the model-based monitoring of state of charge and capacity loss is investigated. The offline parameterization based on genetic algorithm and the online parameterization based on recursive least squares are investigated for the proposed model to compare the model accuracy and robustness. Leveraging the parameterized model, an H-infinity observer is exploited to estimate the battery state of charge and capacity in real time. Experimental results suggest that the proposed autoregressive exogenous model can accurately simulate the dynamic behavior of vanadium redox flow battery. Compared with the offline model based method, the observer based on online adaptive model is superior in terms of the accuracy of modeling, state of charge estimation and capacity loss monitoring. The proposed method is also verified with high robustness to the uncertain algorithmic initialization, electrolyte imbalance, and the change of system design and work conditions.
机译:准确监控充电状态(SOC)和容量损失对于管理钒氧化还原液流电池(VRB)系统至关重要。本文提出了一种新型的钒还原液流电池自回归外生模型,在此基础上研究了基于模型的荷电状态和容量损失监测。研究了基于遗传算法的离线参数化和基于递归最小二乘的在线参数化,以比较模型的准确性和鲁棒性。利用参数化模型,可以使用H-infinity观察器实时估算电池的充电状态和容量。实验结果表明,提出的自回归外生模型可以准确地模拟钒氧化还原液流电池的动态行为。与基于离线模型的方法相比,基于在线自适应模型的观察者在建模的准确性,充电状态估计和容量损失监控方面具有优势。该方法对不确定的算法初始化,电解质失衡以及系统设计和工作条件的变化也具有很高的鲁棒性。

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