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Maximizing the Potential of Energy Storage to Provide Fast Frequency Control

机译:最大化能量存储的潜力,以提供快速频率控制

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Due to their fast responsiveness, energy storage units such as batteries can provide fast frequency control to power systems. However, when the control signal is biased or substantially autocorrelated, they cannot provide services for extended periods of time because they have limited energy capacities. To improve the ability of batteries to provide frequency control, we can offset their frequency response so that they only respond to fast and zero-mean frequency deviations, while passing slower and biased deviations to other resources. We propose two new heuristics to offset frequency control signals, and a method to compare these heuristics to previously developed heuristics. This method allows us to quantify the heuristics from the point of view of both the storage unit operator (return on investment, ROI) and the transmission system operator (impact on the power system). Considering battery degradation, the new heuristics yield better ROIs, and we find that our results are not very sensitive to the battery's energy-to-power ratio around its optimum. We also find that the best choice of heuristic depends on what impact matters most to the transmission system operator.
机译:由于它们的响应性快,诸如电池的能量存储单元可以为电力系统提供快速频率控制。然而,当控制信号被偏置或基本上自相关时,它们不能长时间提供服务,因为它们具有有限的能量能力。为了提高电池提供频率控制的能力,我们可以抵消其频率响应,使它们仅响应快速和零均值的频率偏差,同时通过较慢和偏置对其他资源的偏差。我们提出了两个新的启发式抵消频率控制信号,以及将这些启发式的方法与以前发育的启发式的方法进行比较。该方法允许我们从存储单元操作员(投资回报率返回)和传输系统操作员(对电力系统的影响)来量化启发式启发式。考虑到电池劣化,新的启发式产生了更好的乐轭,我们发现我们的结果对电池的电量与电力比率围绕其最佳效率不太敏感。我们还发现启发式最佳选择取决于对传输系统运营商最重要的影响。

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