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Energy Budget Approximations for Battery-Powered Systems With a Fixed Schedule of Active Intervals

机译:具有固定活动间隔时间表的电池供电系统的能量预算近似值

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The amount of available energy is a critical limitation of battery-powered electronic systems. The classic design goal is to minimize system energy consumption subject to performance constraints. An alternative objective would be to maximize performance under energy constraints, which requires a method for computing the energy budget corresponding to a certain battery lifetime. This paper presents such a method for systems with a fixed schedule of active intervals. Our method computes the energy budget for each active interval and guarantees that the battery survives until the end of the schedule. We rely on an accurate analytical battery model that takes into account nonlinear changes in the battery voltage, capacity loss at high discharge rates, charge recovery, and capacity fade over time. As the battery model is computationally expensive, we also present efficient approximations for computing the upper and lower bounds on the energy budget for each active interval. The main limitation of this work is our assumption that the battery current is the same for all active intervals.
机译:可用能量是电池供电电子系统的关键限制。经典的设计目标是在受到性能限制的情况下将系统能耗降至最低。一个替代的目标是在能量约束下最大化性能,这需要一种用于计算与某个电池寿命相对应的能量预算的方法。本文提出了一种用于具有固定活动间隔计划的系统的方法。我们的方法计算每个活动间隔的能量预算,并保证电池可以使用到计划结束。我们依赖于精确的分析电池模型,该模型考虑了电池电压的非线性变化,高放电速率下的容量损失,电荷恢复以及容量随时间的衰减。由于电池模型的计算量很大,因此我们还提供了有效的近似值,用于计算每个活动间隔的能量预算的上限和下限。这项工作的主要局限性是我们假设所有活动间隔的电池电流都相同。

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