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Systems Optimization of Charging Infrastructure for Electric Vehicles

机译:电动汽车充电基础设施的系统优化

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The large advances in new battery technology has made Electric Vehicles (EV) more attractive and feasible. As the cost and weight of batteries decreases, and the EV range increases, more individuals and companies will consider investing in these vehicles. However, one potential obstacle is the lack of ubiquitous charging locations. Many individuals would be uncomfortable purchasing a vehicle which limits longer trips and constrains their travel close to charging stations. To overcome this obstacle, a specific market segment, taxi drivers, which make many shorter trips typically near large cities, could be early adopters of EV technology and help justify and establish the charging infrastructure which could be used by others later on. With a large potential investment, this system and infrastructure needs to be analyzed and optimized for performance, cost, and other stakeholder objectives. This paper investigates the location and number of charging stations that would be required to meet the demands of a subset of the New York City taxi cab system. An operations model is developed applying the fare data available from the NYC Taxi and Limousine Commission to evaluate the impact on the schedule and performance of individual taxi drivers with EVs. Next, thousands of taxi driver shifts are simulated within the system defined by various numbers and locations of charging stations. Following the initial exploratory assessment, optimization of the system is implemented, from which the result could be used to inform city officials and stakeholders on key decisions during a system implementation phase.
机译:新电池技术的大型进展使电动车(EV)更具吸引力和可行的。随着电池的成本和重量减少,EV系列增加,更多的个人和公司将考虑投资这些车辆。然而,一个潜在的障碍是缺乏无处不在的充电位置。许多人将不舒服购买一辆限制更长的旅行并限制他们接近充电站的旅行。为了克服这个障碍,一个特定的市场分部,出租车司机,这些驾驶员通常在大城市附近越来越多的旅行,可能是EV技术的早期采用者,并帮助证明并建立以后其他人使用的充电基础设施。凭借较大的潜在投资,需要对该系统和基础设施进行分析和优化,以实现性能,成本和其他利益攸关方目标。本文调查了满足纽约市出租车系统的子集所需的收费站的位置和数量。开发了运营模式,应用纽约市出租车和豪华轿车委员会提供的票价数据,以评估对具有EVS的个人出租车司机的时间表和表现的影响。接下来,在由各种数量和充电站定义的系统中模拟数千名出租车司机换档。在初步探索性评估之后,实施了该系统的优化,从而可以用于向城市官员和利益相关者通知在系统实施阶段的关键决策。

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