论文标题
用于家庭能源管理系统基于物理的老化模型的半经验方法
A Semi Empirical Approach to a Physically Based Aging Model for Home Energy Management Systems
论文作者
论文摘要
锂离子电池中与衰老相关现象的研究日益浓厚的兴趣是通过电动汽车中的储能系统的增加利用和建筑物中的工具蓄能器与可再生能源配对的。本文提出了一种混合降解模型方法,该方法将半经验方法与基于物理模型的益处相结合。这可以轻松校准不同的电池化学,必要时推断出来,并且在计算上足够有效,可以与实时运行控制系统结合使用。为了证明所提出的方法的有效性,证明了智能家用能源管理系统中两种不同控制策略的影响对磷酸锂(LFP)电池的老化。
A growing interest in the study of aging related phenomena in lithium-ion batteries is propelled by the increasing utilization of energy storage systems in electric vehicles and in buildings as stationery energy accumulators paired with renewable energy sources. This paper proposes a mixed-degradation model approach that combines the benefits of a semi-empirical approach with that of a physics-based model. This enables easy calibration for different battery chemistries, the ability to extrapolate when necessary, and is computationally efficient enough to be coupled with real-time running control systems. To demonstrate the effectiveness of the proposed approach, the effect of two different control strategies in a smart home energy management system is demonstrated on the aging of a Lithium iron phosphate (LFP) battery.