...
首页> 外文期刊>Energies >Study of a New Quick-Charging Strategy for Electric Vehicles in Highway Charging Stations
【24h】

Study of a New Quick-Charging Strategy for Electric Vehicles in Highway Charging Stations

机译:高速公路充电站电动汽车快速充电新策略研究

获取原文
   

获取外文期刊封面封底 >>

       

摘要

To solve the problem, because of which conventional quick-charging strategies (CQCS) cannot meet the requirements of quick-charging for multiple types of electric vehicles (EV) on highways where vehicle inflow is excessive, this paper proposed a new quick-charging strategy (NQCS) for EVs: on the premise of not affecting those EVs being charged, the remaining power of the quick-charging pile with multiple power output interfaces is used to provide a synchronous charging service for EVs waiting in the queue. To verify the effectiveness of this strategy, a power distribution model of charging pile and a queuing model of charging station (CS) were constructed. In addition, based on an actual highway service area where vehicle inflow is excessive during the simulation period (0:00–24:00), charging situations of CQCS and NQCS were respectively simulated in a charging station (CS), with different number of chargers, by basic queuing algorithm and an improved queuing algorithm. The simulation results showed that when the relative EV inflow is excessive, compared to CQCS, NQCS not only can reduce user waiting time, charging time, and stay time, but also can improve the utilisation rate of charging infrastructure and service capacity of CS and reduce the queue length of CS. At the same time, NQCS can reduce the impact on the power grid. In addition, in NQCS, the on-demand power distribution method is more efficient than the average power distribution method. Therefore, NQCS is more suitable for quick-charging for multiple types of EVs on highways where vehicle inflow is excessive.
机译:为了解决该问题,由于传统的快速充电策略(CQCS)不能满足车辆流量过大的高速公路上多种电动汽车(EV)的快速充电要求,因此提出了一种新的快速充电策略电动汽车(NQCS):在不影响正在充电的电动汽车的前提下,具有多个电源输出接口的快速充电桩的剩余电量用于为排队等候的电动汽车提供同步充电服务。为了验证该策略的有效性,构建了充电桩的配电模型和充电站排队模型。此外,根据模拟期间(0:00-24:00)车辆流入过多的实际高速公路服务区,分别在充电站(CS)中模拟了CQCS和NQCS的充电情况,充电器,通过基本排队算法和改进的排队算法。仿真结果表明,当相对电动汽车流入量过大时,与CQCS相比,NQCS不仅可以减少用户等待时间,充电时间和停留时间,而且可以提高充电基础设施的利用率和CS的服务能力,降低CS的队列长度。同时,NQCS可以减少对电网的影响。另外,在NQCS中,按需配电方法比平均配电方法更有效。因此,NQCS更适合在车辆流入过多的高速公路上对多种类型的电动汽车进行快速充电。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号