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Battery capacity of deferrable energy demand

机译:电池容量的可延迟能源需求

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摘要

We investigate the ability of a homogeneous collection of deferrable energy loads to behave as a battery; that is, to absorb and release energy in a controllable fashion up to fixed and predetermined limits on volume, charge rate and discharge rate. We derive bounds on the battery capacity that can be realized and show that there are fundamental tradeoffs between battery parameters. By characterizing the state trajectories under scheduling policies that emulate two illustrative batteries, we show that the trade-offs occur because the states that allow the loads to absorb and release energy at high aggregate rates are conflicting.
机译:我们研究了可延迟能量负载的均质集合充当电池的能力。也就是说,以可控制的方式吸收和释放能量,直至达到体积,充电率和放电率的固定和预定极限。我们得出了可以实现的电池容量界限,并表明电池参数之间存在根本的权衡。通过在模拟两个说明性电池的调度策略下表征状态轨迹,我们表明了权衡是因为允许负载以高聚集速率吸收和释放能量的状态相互冲突。

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