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首页> 外文期刊>Simulation modelling practice and theory: International journal of the Federation of European Simulation Societies >Design methodology for a dc–dc power conversion system with EIS capability for battery packs
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Design methodology for a dc–dc power conversion system with EIS capability for battery packs

机译:电池组具有EIS功能的DC-DC电源转换系统的设计方法

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This paper presents a design methodology for a dc-dc power conversion system (PCS) for battery packs. The methodology provides with an optimal design of the PCS and the associated inductive-capacitive filter interfacing the battery pack with the PCS. The PCS adds superior capability over conventional designs, which is performing current and voltage perturbations at the battery terminals for the so-called electrochemical impedance spectroscopy (EIS). This technique is an option for battery state-of-charge (SoC) and state-of-health (SoH) assessment. The design is optimal in the sense that it minimizes volume and system power losses. Such multi-objective optimization is addressed adopting the theory of weighted sum and Pareto front. The methodology is tested through a case study, addressing a lithium-ion battery pack. The offered analyses permit to identify the impact in system performance of diverse design variables such as dc-link voltage for the PCS and its switching frequency.
机译:本文为电池组提供了DC-DC电源转换系统(PCS)的设计方法。 该方法提供了PC的最佳设计和与PC接口电池组的相关电感电容滤波器。 PC通过传统设计增加了优异的能力,该设计是在所谓的电化学阻抗光谱(EIS)的电池端子处执行电流和电压扰动。 该技术是电池充电状态(SOC)和健康状态(SOH)评估的选项。 设计是最佳的最大限度地缩短音量和系统功率损耗。 这种多目标优化是通过加权和帕累托的理论来解决。 通过案例研究测试方法,寻址锂离子电池组。 提供的分析允许识别不同设计变量的系统性能的影响,例如PC的DC-Link电压及其开关频率。

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