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Battery management system with testing protocols for kW-class vanadium redox flow batteries

机译:具有kW级钒氧化还原液流电池测试协议的电池管理系统

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A Battery Management System (BMS) for a kW-class vanadium redox flow battery (VRFB) was developed and is reported in this paper. This kind of BMSs is intrinsically different from those of solid-state batteries, due to the very different battery operating principle. Such BMS was built entirely in-house around a desktop computer provided with LabVIEW software which results in an expandable and flexible system capable of providing the battery with SCADA functions. It acquires and processes all data generated by the thermo-fluid and electric sensors, which are necessary to carry out the subsequent analyses. Moreover, this BMS also creates the feedback signals for controlling every operation, including experiments such as polarization curves plotting and efficiency computation. As regards polarization curves, this algorithm implements an experimental protocol that allows to obtain such performance in reproducible conditions and possibly comparable with those of similar stacks. The efficiency computation algorithm computes the energy absorbed (or delivered) by the battery while acquiring and controlling all signals so as to ensure safe conditions. The management of signal between stack and BMS includes the galvanic insulation of cell and stack voltages, consisting of multiple opto-isolators and a DC/DC transformer.
机译:开发了一种用于kW级钒氧化还原液流电池(VRFB)的电池管理系统(BMS),并在本文中进行了报道。由于电池的工作原理非常不同,因此这种BMS与固态电池本质上是不同的。这种BMS完全是在装有LabVIEW软件的台式计算机内部构建的,从而导致可扩展且灵活的系统能够为电池提供SCADA功能。它获取并处理由热流体和电传感器生成的所有数据,这些数据是进行后续分析所必需的。此外,该BMS还创建用于控制每个操作的反馈信号,包括极化曲线图绘制和效率计算等实验。关于极化曲线,该算法实现了一种实验协议,该协议允许在可重现的条件下获得这种性能,并且可能与类似堆栈的性能相当。效率计算算法在获取和控制所有信号的同时计算电池吸收(或传递)的能量,以确保安全情况。电池组和BMS之间的信号管理包括电池和电池组电压的电绝缘,它由多个光电隔离器和一个DC / DC变压器组成。

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