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Emulating batteries with deferrable energy demand

机译:模拟具有延迟能量需求的电池

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We investigate the ability of a 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. In a previous paper, we derived upper bounds on the parameters of the batteries that can be emulated, and showed that there is a fundamental trade-off between the abilities of collective load to absorb and release energy at high rates. Here, we introduce a novel class of dynamic priority-driven feedback policies that balance these abilities, and characterize the batteries that they can emulate.
机译:我们研究了一组可延期的能量负载作为电池的能力。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。在先前的论文中,我们得出了可以模拟的电池参数的上限,并表明在集体负载的高速率吸收和释放能量的能力之间存在根本的权衡。在这里,我们介绍了一类新颖的动态优先级驱动的反馈策略,该策略平衡了这些功能,并描述了它们可以仿真的电池。

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