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A Consecutive Energy Management Approach for a VPP Comprising Commercial Loads and Electric Vehicle Parking Lots Integrated with Solar PV Units and Energy Storage Systems

机译:包括与太阳能光伏单位和能量存储系统集成的商业负载和电动车辆停车场的VPP的连续能量管理方法

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Renewable energy resources (RES), such as photovoltaic (PV) solar systems, are environmentally friendly and can help to meet the fast growing load demand. Further, electric vehicle (EV) is a reliable alternative for the conventional vehicles given its technical and environmental advantages. However, due to the intermittent nature of the solar PV output, and also the electric and the economic issues that can be caused by the EV mass charging, a suitable paradigm is necessary for a better integration of EV charging with PV systems in distribution power systems. In this paper, a model of a virtual power plant (VPP), comprises the PV system and the EVs' parking lot, connected to a distribution power grid is developed. A consecutive energy management (CEM)-based methodology is presented to assign an organized and economic energy management for the VPP and to address the electric constraints for the power systems. Both the electric and economic impacts of the VPP and the efficacy of the CEM method are assessed through different case studies. The results from the case studies show that the proposed CEM method can decrease the cost of energy to the VPP and facilitate the integration of the VPP in power systems under varying system conditions.
机译:可再生能源资源(RES),如光伏(PV)太阳能系统,是环保的,有助于满足快速增长的负荷需求。此外,电动车辆(EV)是传统车辆的可靠替代方案,鉴于其技术和环境优势。然而,由于太阳能光伏输出的间歇性,而且还可以由EV质量充电引起的电气和经济问题,因此在分销电力系统中更好地集成了EV充电的更好地集成了适当的范式。 。本文开发了一种虚拟电厂(VPP)的模型,包括PV系统和EVS的停车场,其连接到分配电网。基于连续的能源管理(CEM)的方法,以为VPP分配有组织和经济能源管理,并解决电力系统的电气限制。通过不同的案例研究评估VPP对VPP的电力和经济影响以及CEM方法的疗效。案例研究的结果表明,所提出的CEM方法可以降低对VPP的能量成本,并促进VPP在不同系统条件下的电力系统中的集成。

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