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Effective Accessible Energy to Accommodate Load Demand of Electric Vehicles

机译:有效的无障碍能量,以适应​​电动汽车的负荷需求

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The continuous increase of electric vehicles (EVs) has led to many challenges related to allocating the required resources to maintain the reliability of power systems. Determining the amount of controlled charging of EV loads that can be added to a power system without deteriorating its reliability is a key factor in addressing these challenges. This paper introduces the concept of “Extra Effective Available Energy” to accommodate the load demand of electric vehicles (EEAE-EVs) with controlled charging in power system adequacy assessment. The EEAE-EVs is defined as the amount of EV loads that can be added to a power system without the need for generation expansion. Also, this paper proposes a new method to determine the amount of extra generation needed to restore the initial reliability level (i.e., the reliability level prior to adding the load of EVs) which is defined as “Extra Effective Required Generation” for EVs (EERG-EVs), Proposed approaches are demonstrated on the IEEE Reliability Test System with real EV charging data. Monte Carlo simulations are used to evaluate the well-known power system reliability indices, the EEAE-EVs, and the EERG-EVs.
机译:电动车辆(EVS)的连续增加导致了许多与分配所需资源相关的挑战,以维持电力系统的可靠性。确定可以添加到电力系统的EV负载的受控充电的量而不会恶化其可靠性是解决这些挑战的关键因素。本文介绍了“额外有效可用能量”的概念,以适应电动车辆(EEAE-EV)用的,在电力系统充足评估控制充电负载需求。 EEAE-EVS定义为可以在不需要扩展的情况下添加到电力系统的EV负载量。此外,本文提出了一种新方法来确定恢复初始可靠性水平所需的额外发电量(即,在添加EVS的负载之前的可靠性水平),其被定义为EVS的“额外有效所需生成”(EERG -EVS),提出的方法是在IEEE可靠性测试系统上进行了证明,具有实际EV充电数据。蒙特卡洛模拟可用于评估公知的电力系统的可靠性指数,所述EEAE-EVS和EERG-EVS。

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