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首页> 外文期刊>IEEE Transactions on Industry Applications >An Efficient Energy Management Approach for a Solar-Powered EV Battery Charging Facility to Support Distribution Grids
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An Efficient Energy Management Approach for a Solar-Powered EV Battery Charging Facility to Support Distribution Grids

机译:用于支持配电网的太阳能电动EV电池充电设施的高效能源管理方法

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The home photovoltaic (HPV) system integrated with energy storages can supply power to the distribution grid which may be reliable and free from HPV intermittency effects. However, this is always associated with the high cost of energy storages. On the other hand, the growth of electric vehicles (EVs) in the market has a potential to place the distribution grid in a high risk as the EV owners may charge the EV battery on demand which may cause an unexpected increase in the evening and power quality problems. This article proposes an efficient energy management approach for the HPV systems to power the electric vehicle battery (EVB) charging facility while utilizing the EVB as an energy storage system (ESS) that can mitigate the HPV impacts and allow the growth of HPV systems in power grids. This research is aimed for EVs that are compatible with the dc fast charging CHAdeMO standard. The operation strategy of the HPV-EVB charging system is designed in such a way that the EVB is charged efficiently either by the HPV or by the distribution grid. The proposed energy management strategy will help reduce the unexpected peak power demand, and can help in the implementation of the vehicle-to-grid (V2G) to improve the stability of the grid during peak load. In addition, the EVB can provide power to the critical loads in the home when there is a loss of power supply from the grid. In the proposed system, the HPV, the grid, and the EVB converters share a common dc bus. Both simulation and experimental results show that the proposed energy management of the HPV-EVB system can reduce the impacts of the high penetration of EVs and HPVs on power distribution grids and can effectively improve the self-consumption of the HPV systems.
机译:集成有储能装置的家用光伏(HPV)系统可以向配电网供电,这可能是可靠的,并且不会受到HPV间歇性影响。然而,这总是与能量存储的高成本相关联。另一方面,市场上电动汽车(EV)的增长有可能使配电网处于高风险之中,因为EV所有者可能会按需为EV电池充电,这可能会导致夜间和电力意外增加质量问题。本文为HPV系统提出了一种有效的能源管理方法,以为电动汽车电池(EVB)充电设施供电,同时将EVB用作可减轻HPV影响并允许HPV系统的电力增长的储能系统(ESS)网格。这项研究的目标是与直流快速充电CHAdeMO标准兼容的电动汽车。 HPV-EVB充电系统的运行策略设计为,可以通过HPV或配电网对EVB进行高效充电。拟议的能源管理策略将有助于减少意外的峰值功率需求,并有助于实施车辆到电网(V2G)来提高峰值负载期间电网的稳定性。此外,当电网电源中断时,EVB可以为家庭中的关键负载供电。在建议的系统中,HPV,电网和EVB转换器共享一个公共直流总线。仿真和实验结果均表明,所提出的HPV-EVB系统的能量管理可以减少EV和HPV的高普及率对配电网的影响,并可以有效地改善HPV-EVB系统的自耗。

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