Diahovchenko Illia
Energy Institute, University College Dublin, Dublin, Ireland.
Electric Power Engineering Department, Sumy State University, Sumy, Ukraine.
Heliyon. 2024 Oct 28;10(21):e39904. doi: 10.1016/j.heliyon.2024.e39904. eCollection 2024 Nov 15.
The ongoing growth in global electricity demand and rapid proliferation of electric vehicles (EVs) are posing challenges to the operation of the low voltage power networks and their components. This study aims to analyze the impacts of peak-load demand on the distribution transformers, considering mild and extreme combinations of electric energy demand and localized charging of plug-in EVs under their different penetration levels, hypothesizing that shifting the demand for charging throughout the day can reduce the aging of distribution transformers. The proposed method employs a fuzzy-logic-based tool, which incorporates the influence of ambient temperature, higher harmonics, reactive power compensation, reverse power flows, and overload. Three different charging/discharging modes have been considered: demand charging, off-peak charging, and synergy of off-peak charging and vehicle-to-house technology. The results indicate that off-peak charging emerges as 2.1 times more effective than demand charging in terms of the transformer's loss of life, particularly for ultimate EV penetration of 100 %. It is demonstrated that the utilization of charging scheduling for EVs should be prioritized to defer costly system upgrades and reinforcements, particularly when EV penetration exceeds 50 %.
全球电力需求的持续增长以及电动汽车(EV)的迅速普及,给低压电网及其组件的运行带来了挑战。本研究旨在分析峰值负荷需求对配电变压器的影响,考虑电能需求的温和与极端组合以及插电式电动汽车在不同渗透率下的局部充电情况,并假设全天转移充电需求可以减少配电变压器的老化。所提出的方法采用了基于模糊逻辑的工具,该工具考虑了环境温度、高次谐波、无功功率补偿、反向功率流和过载的影响。考虑了三种不同的充电/放电模式:按需充电、非高峰充电以及非高峰充电与车辆到住宅技术的协同作用。结果表明,就变压器的寿命损失而言,非高峰充电比按需充电有效2.1倍,特别是在电动汽车最终渗透率达到100%的情况下。结果表明,应优先利用电动汽车的充电调度来推迟昂贵的系统升级和增强,特别是当电动汽车渗透率超过50%时。