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An aggregate model of plug-in electric vehicles for primary frequency control

机译:用于一次频率控制的插电式电动汽车的集合模型

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Summary form only given. The penetration level of plug-in electric vehicles (PEVs) has the potential to be notably increased in the near future, and as a consequence, power systems face new challenges and opportunities. In particular, PEVs are able to provide different types of power system ancillary services. The capability of storing energy and the instantaneous active power control of the fast-switching converters of PEVs are two attractive features that enable PEVs to provide various ancillary services, e.g., primary frequency control (PFC). However, concurrently, PEVs are obliged to be operated and controlled within limits, which curbs the grid support from PEVs. This paper proposes a new model for PEV using a participation factor, which facilitates the incorporation of several PEV fleets characteristics such as minimum desired state of charge (SOC) of the PEV owners, drive train power limitations, constant current and constant voltage charging modes of PEVs. In order to reduce computational complexity, an aggregate model of PEVs is provided using statistical data. In the end, the performance of PEVs for the provision of PFC is evaluated in a power system. Results show that PEV fleets can successfully improve frequency response, once all the operating constraints are respected.
机译:仅提供摘要表格。插电式电动汽车(PEV)的普及率在不久的将来有可能显着提高,因此,电力系统面临着新的挑战和机遇。尤其是,PEV能够提供不同类型的电力系统辅助服务。 PEV的快速开关转换器的能量存储能力和瞬时有功功率控制是使PEV能够提供各种辅助服务的两个吸引人的功能,例如,主频率控制(PFC)。然而,同时,PEV必须在限制内操作和控制,这限制了PEV对电网的支持。本文提出了一种使用参与因子的PEV的新模型,该模型促进了PEV车队特征的整合,例如PEV拥有者的最低期望充电状态(SOC),传动系统功率限制,恒定电流和恒定电压充电模式。电动汽车。为了降低计算复杂度,使用统计数据提供了PEV的聚合模型。最后,在电力系统中评估用于提供PFC的PEV的性能。结果表明,一旦遵守所有运行限制条件,PEV车队就能成功改善频率响应。

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