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A Novel System for Measuring Alternating Current Impedance Spectra of Series-Connected Lithium-Ion Batteries With a High-Power Dual Active Bridge Converter and Distributed Sampling Units

机译:一种新型系统,用于测量串联连接锂离子电池的交流阻抗谱,具有大功率双极电桥转换器和分布式采样单元

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Alternating current (ac) impedance spectra facilitate lithium-ion battery management. Realizing a low-cost and low-complexity onboard impedance measuring system is a vital issue for the management based on the ac impedance. In the article, a novel impedance measuring system combined with a high-power dual active bridge (DAB) converter and distributed sampling units is proposed and verified. The DAB converter is designed to generate the ac disturbance to ensure a quasi-steady measurement of the battery impedance. The distributed signal sampling units simultaneously measure the voltage and current of all the series-connected battery cells in a module to measure their impedance. The measured impedance in a frequency range of 0.1-500 Hz shows the feasibility of the system. The root-mean-square errors of the measured impedance phase from 0.2 to 200 Hz and the magnitude from 0.1 to 500 Hz are less than 6.9% and 4.0%, respectively. The errors in some frequency ranges are slightly larger, which are analyzed. The novelty is reflected in that the system is easily integrated into a bidirectional onboard charger and compatible with the battery management system, thus reducing costs and complexity. It provides a basis for the onboard application of the battery impedance.
机译:交流电流(AC)阻抗光谱有助于锂离子电池管理。实现低成本和低复杂性的车载阻抗测量系统是基于AC阻抗的管理的重要问题。在该物品中,提出了一种与大功率双极电桥(DAB)转换器和分布式采样单元结合的新型阻抗测量系统。 DAB转换器旨在产生交流干扰,以确保电池阻抗的准稳态测量。分布式信号采样单元同时测量模块中所有串联电池单元的电压和电流以测量其阻抗。 0.1-500Hz频率范围内的测量阻抗显示了系统的可行性。测量阻抗阶段的根平均方误差为0.2至200Hz,0.1至500Hz的幅度分别小于6.9%和4.0%。一些频率范围内的误差略大,分析。新颖性反映在该系统中,该系统很容易集成到双向车载充电器中,并与电池管理系统兼容,从而降低成本和复杂性。它为电池阻抗的板载应用提供了基础。

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