通过电池调度最大化系统寿命

M. Jongerden, B. Haverkort, H. Bohnenkamp, J. Katoen
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引用次数: 40

摘要

移动设备的使用受到电池寿命的限制。一些设备可以选择连接一个额外的电池,或者使用带有多个电池的智能电池组来延长使用寿命。在这些情况下,在负载上调度电池以利用恢复特性通常可以延长系统的使用寿命。直接的调度方案,如循环或选择最好的电池,已经提供了一个很大的改进,相比于电池的顺序放电。本文将这些调度方案与由定价时间自动机电池模型产生的最优调度方案(在Uppaal Cora中实现和评估)进行了比较。我们看到,在某些情况下,简单调度方案的结果接近最优。然而,最佳时间表也清楚地表明,电池寿命仍有提高的空间。
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Maximizing system lifetime by battery scheduling
The use of mobile devices is limited by the battery lifetime. Some devices have the option to connect an extra battery, or to use smart battery-packs with multiple cells to extend the lifetime. In these cases, scheduling the batteries over the load to exploit recovery properties usually extends the system lifetime. Straightforward scheduling schemes, like round robin or choosing the best battery available, already provide a big improvement compared to a sequential discharge of the batteries. In this paper we compare these scheduling schemes with the optimal scheduling scheme produced with a priced-timed automaton battery model (implemented and evaluated in Uppaal Cora). We see that in some cases the results of the simple scheduling schemes are close to optimal. However, the optimal schedules also clearly show that there is still room for improving the battery lifetimes.
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