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首页> 外文期刊>IEEE Transactions on Control Systems Technology >An Energy-Optimal Warm-Up Strategy for Li-Ion Batteries and Its Approximations
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An Energy-Optimal Warm-Up Strategy for Li-Ion Batteries and Its Approximations

机译:锂离子电池的能量最优预热策略及其近似

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The resistance of lithium-ion cells increases at subzero temperatures reducing the cells' power availability. One way to improve a cell's performance in these adverse operation conditions is to proactively heat them. This paper considers the scenario in which a cell is heated from both inside and outside; a current is drawn from the cell to power a convective heater and Joule heating warms the cell from inside. A method to derive the time-limited energy-optimal current policy is presented, analyzed, and numerically solved. It is proven that the optimal current policy is a sequence of constant voltage, constant current, and rest phases. Using this observation, two rule-based approximations of the optimal solution are presented and their relative performance is compared to conclude that the inclusion of the rest phase has the potential to decrease energy consumption by similar to 9%. To build and compare these approximations, new tools related to the estimation of the time-limited backward reachable set of nonlinear systems are presented.
机译:锂离子电池的电阻在亚零温度下增加降低细胞的电力可用性。在这些不利操作条件下改善细胞性能的一种方法是主动加热它们。本文考虑了将电池从内部和外部加热的场景;从电池中汲取电流以为对流加热器供电,并且焦耳加热将电池从内部温暖。呈现,分析和数值解决了导出时间有限的能量最优电流策略的方法。证明最佳电流策略是一系列恒定电压,恒流和休息阶段。使用该观察,提出了两个基于最佳解决方案的规则的近似,并比较它们的相对性能来得出结论,包括静态阶段的含量使能量消耗降低到9%。为了构建和比较这些近似值,提出了与估计有限的后向可达的非线性系统集的新工具。

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