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Analyzing the suitability of flywheel energy storage systems for supplying high-power charging e-mobility use cases

机译:分析了飞轮储能系统提供高功率充电e-Mopility用例的适用性

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The trend towards increasing the charging power of future e-mobility will challenge existing distribution power systems and raise grid utilization- and connection costs. Flywheel energy storage systems (FESSs) may reduce future power grid charges by providing peak shaving services, though, are characterized by significant standby energy losses. On this account, this study evaluates the economic- and technical suitability of FESSs for supplying three high-power charging electric vehicle use cases. Therefore, we initially investigate the impact of individual charging patterns on the required FESS capacity, the annualized costs, and the FESS efficiency. Based on these correlations, the economic and technical optima of FESS applications are identified for each use case: The supply of electric buses enables a cost-efficient operation at the technical optima of FESSs. In contrast, the economic suitability of FESSs considering electric last-mile delivery trucks or highway fast-charging is restricted to low recharging energy demands and high charging power of electric vehicles. Furthermore, a cost-efficient operation of FESSs at the technical optima requires either a reduction of flywheel costs or an increase of power-based grid utilization charges in the upcoming years.
机译:增加未来电子流动性充电能力的趋势将挑战现有的分销电力系统并提高网格利用率和连接成本。飞轮储能系统(FESS)可以通过提供峰值剃须服务来降低未来的电网电荷,其特征在于显着的备用能量损失。在此账户上,本研究评估了FESS供应三种大功率充电电动车辆用例的经济和技术适用性。因此,我们最初调查各个充电模式对所需的诉讼容量,年产成本和居住效率的影响。基于这些相关性,为每个用例识别出友邦应用的经济和技术最佳:电动总线的供应使得能够在Fesss的技术Optima中进行成本效益的操作。相比之下,考虑电动一英里的送货卡车或公路快速充电的驻居队的经济适用性仅限于低充电能源需求和电动汽车的高充电力。此外,在技术OPTAM中的FESSS的成本有效的操作需要降低飞轮成本或即将到来的多年来的基于功率的电网利用费用的增加。

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