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Double-layered intelligent energy management for optimal integration of plug-in electric vehicles into distribution systems

机译:双层智能能源管理,可将插电式电动汽车最佳地集成到配电系统中

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摘要

This paper proposes a double-layered intelligent energy management (DIEM) approach for optimal integration of plug-in electric vehicles (PEVs) into a distribution system. The proposed approach involves two optimization layers for real and reactive power management of PEVs which take place at nodal and system level, respectively. The first optimization layer for real power management is designed from nodal aggregator’s perspective and aims to minimize the daily total cost incurred for PEV (dis)charging. The second optimization layer for reactive power management is designed from distribution system operator’s perspective where the objective is to minimize the system power loss utilizing the reactive power capacity provided by PEVs. The DIEM approach is implemented for PEV integration in a 33-bus distribution system and its performance is assessed against a single-layered intelligent energy management (SIEM) approach which involves only first optimization layer, i.e. real power management of PEVs. The simulation results indicate that utilizing reactive power services of PEVs allows the proposed approach to provide voltage regulation and hence the ability to integrate higher PEV penetration within permissible voltage limits. Furthermore, the simulation results clearly demonstrate the effectiveness and superiority of the proposed DIEM approach in comparison to the SIEM approach.
机译:本文提出了一种双层智能能源管理(DIEM)方法,用于将插电式电动汽车(PEV)最佳集成到配电系统中。所提出的方法涉及PEV的有功和无功功率管理的两个优化层,分别发生在节点和系统级别。从节点聚合器的角度设计了用于有功功率管理的第一优化层,目的是最大程度地减少PEV(放电)充电的每日总成本。无功功率管理的第二个优化层是从配电系统运营商的角度设计的,其目的是利用PEV提供的无功功率容量来最大程度地降低系统功率损耗。 DIEM方法是针对33总线配电系统中的PEV集成实施的,其性能是根据仅涉及第一优化层的单层智能能源管理(SIEM)方法进行评估的,即PEV的实际功率管理。仿真结果表明,利用PEV的无功功率服务可以使所提出的方法提供电压调节,因此可以在允许的电压限值内集成更高的PEV穿透能力。此外,仿真结果清楚地证明了与SIEM方法相比,所提出的DIEM方法的有效性和优越性。

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