An Analytical High-Level Battery Model for Use in Energy Management of Portable Electronic Systems

Daler N. Rakhmatov, S. Vrudhula
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引用次数: 260

Abstract

Once the battery becomes fully discharged, a battery-powered portable electronic system goes off-line. Therefore, it is important to take the battery behavior into account. A system designer needs an adequate high-level model in order to make battery-aware decisions that target maximization of the system's lifetime on-line. We propose such a model: it allows a designer to predict the battery time-to-failure for a given load and provides a cost metric for lifetime optimization algorithms. Our model also allows for a tradeoff between the accuracy and the amount of computation performed. The quality of the proposed model is evaluated using a detailed low-level simulation of a lithium-ion electrochemical cell.
一种用于便携式电子系统能量管理的解析型高级电池模型
一旦电池完全放电,电池供电的便携式电子系统就会离线。因此,考虑电池的性能是很重要的。系统设计人员需要一个适当的高级模型,以便做出电池感知决策,目标是最大化系统的在线寿命。我们提出了这样一个模型:它允许设计人员预测给定负载下的电池故障时间,并为寿命优化算法提供成本指标。我们的模型还允许在精度和执行的计算量之间进行权衡。所提出的模型的质量是通过对锂离子电化学电池进行详细的低水平模拟来评估的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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