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New Temperature-Compensated Multi-Step Constant-Current Charging Method for Reliable Operation of Battery Energy Storage Systems

机译:用于可靠运行电池储能系统的新型温度补偿多步恒流充电方法

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摘要

Battery lifetime represents a significant concern for the techno-economical operation of several applications based on energy storage. Moreover, the charging method is considered as one of the main critical elements in defining and influencing the operating lifetime of batteries. Several charging techniques have been addressed in the literature, however almost all of them are suffering from lack of temperature feedback in order to maintain battery lifetime. This paper presents a new high-reliable charging method for battery energy storage systems (ESSs). The proposed temperature compensated multi-step constant current (TC-MSCC) method is developed based upon the modified (MSCC) charging method. It enhances the operating lifetime of batteries by employing a feedback from the battery temperature to control the duration and starting time of each charging current step. Compared with the traditional charging methods addressed in the literature, the proposed TC-MSCC method achieves faster charging than the conventional constant current (CC) and the constant-current constant-voltage (CC-CV) methods. Moreover, the proposed TC-MSCC method possesses longer operating battery lifetime with reduced thermal stresses compared to the traditional MSCC methods. The proposed charging method is verified by simulation and experimental results using 9 Ah lead-acid battery. However, the new proposed TC-MSCC method is generalized and can be applied to various types of batteries. The detailed performance comparisons and results show the superiority of the proposed methods over the most widespread charging methods in the literature.
机译:电池寿命代表了基于能量存储的几种应用的技术经济运行的重要关注。此外,充电方法被认为是定义和影响电池的运行寿命的主要关键元件之一。在文献中已经解决了几种充电技术,然而,几乎所有这些都缺乏缺乏温度反馈,以保持电池寿命。本文为电池储能系统(ESS)提供了一种新的高可靠充电方法。基于改进的(MSCC)充电方法,开发了所提出的温度补偿的多步恒流(TC-MSCC)方法。它通过采用从电池温度的反馈来控制每个充电电流步骤的持续时间和开始时间来增强电池的操作寿命。与文献中寻址的传统充电方法相比,所提出的TC-MSCC方法比传统恒流(CC)和恒流恒压(CC-CV)方法更快地实现充电。此外,与传统的MSCC方法相比,所提出的TC-MSCC方法具有较长的操作电池寿命,其热应力降低。通过使用9 AH铅酸电池的模拟和实验结果验证所提出的充电方法。然而,新的提出的TC-MSCC方法是广泛的,可以应用于各种类型的电池。详细的性能比较和结果表明,在文献中最广泛的充电方法中提出的方法的优势。

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