Minimizing state-of-health degradation in hybrid electrical energy storage systems with arbitrary source and load profiles

Yanzhi Wang, X. Lin, Q. Xie, N. Chang, Massoud Pedram
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引用次数: 30

Abstract

Hybrid electrical energy storage (HEES) systems consisting of heterogeneous electrical energy storage (EES) elements are proposed to exploit the strengths of different EES elements and hide their weaknesses. The cycle life of the EES elements is one of the most important metrics. The cycle life is directly related to the state-of-health (SoH), which is defined as the ratio of full charge capacity of an aged EES element to its designed (or nominal) capacity. The SoH degradation models of battery in the previous literature can only be applied to charging/discharging cycles with the same state-of-charge (SoC) swing. To address this shortcoming, this paper derives a novel SoH degradation model of battery for charging/discharging cycles with arbitrary patterns. Based on the proposed model, this paper presents a near-optimal charge management policy focusing on extending the cycle life of battery elements in the HEES systems while simultaneously improving the overall cycle efficiency.
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具有任意源和负载轮廓的混合储能系统中健康状态退化的最小化
提出了由异构电能存储单元组成的混合电能存储系统,利用不同电能存储单元的优点,隐藏其缺点。EES元件的循环寿命是最重要的指标之一。循环寿命与健康状态(SoH)直接相关,健康状态(SoH)被定义为老化EES元件充满电容量与其设计(或标称)容量的比率。以往文献中的电池SoH降解模型只能适用于具有相同充电状态(SoC)摆动的充放电循环。针对这一缺陷,本文提出了一种基于任意模式充放电循环的新型电池SoH降解模型。在此基础上,提出了一种近乎最优的充电管理策略,以延长HEES系统中电池元件的循环寿命,同时提高整体循环效率。
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