Modeling of Electrochemical Batteries Behavior and Lifetime Degradation for PV Applications

Rafael César Nolasco, V. F. Mendes
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Abstract

The interest in studying electrochemical batteries in many applications is rising in the last years, due to increasing applications of storage systems in which batteries have a crucial role. For example, one can cite electric vehicles and in the future power systems, where storage can be used for load leveling, power variation damping and power quality improvement. Although batteries are a component known for a long time, modelling them is a very complex task. There is not a general model easily applicable in every situation. To address this issue, this paper presents the approaches commonly used in battery modelling and develops one model to represent the behavior of battery voltage and capacity during a discharge and charge cycle. Furthermore, another model is used to predict the lifetime and the degradation. These models are developed in order to simulate small scale battery systems for Demand Side Management applications with PV generation.
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光伏应用中电化学电池行为和寿命退化的建模
近年来,由于电池在存储系统中的应用越来越多,研究电化学电池在许多应用中的兴趣正在上升。例如,人们可以引用电动汽车和未来的电力系统,其中存储可用于负载均衡,功率变化阻尼和电能质量改善。虽然电池是一种众所周知的部件,但为它们建模是一项非常复杂的任务。没有一种通用的模式可以适用于所有的情况。为了解决这一问题,本文介绍了电池建模中常用的方法,并开发了一个模型来表示电池在放电和充电周期中的电压和容量的行为。在此基础上,采用另一种模型对寿命和退化进行了预测。这些模型的开发是为了模拟小型电池系统的需求侧管理应用与光伏发电。
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