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A Heuristic Approach for Coordination of Plug-In Electric Vehicles Charging in Smart Grid

机译:智能电网中插电式电动汽车充电协调的启发式方法

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In this paper, a heuristic load management algorithm (H-LMA) is proposed for Plug-in Electric Vehicles (PEVs) charging coordination. The proposed approach is aimed to minimize system losses over a period T (e.g., 24 hours) through re-optimizing the system at time intervals (e.g., 15 minutes) while regulating bus voltages through future smart grid communication system by exchanging signals with individual PEV chargers. Scheduling is performed based on the allowable substation transformer loading level and taking into account PEV owner preference/priority within three designated charging time zones. Starting with the highest priority consumers, H-LMA will distribute charging of PEVs within the selected priority time zones to minimize total system losses over a period T while maintaining network operation criteria such as power generation and bus voltages within their permissible limits. Simulation results are presented for different charging scenarios and are compared to demonstrate the performance of H-LMA for the modified IEEE 23 kV distribution system connected to several low voltage residential networks populated with PEVs. The main contribution of this paper lies in the detailed simulations / analyses of the smart grid under study and highlighting the impacts of and T values on the performance of the proposed coordination approach in terms of accuracy and coordination execution time.
机译:本文提出了一种启发式负荷管理算法(H-LMA),用于插电式电动汽车(PEV)的充电协调。所提出的方法旨在通过以时间间隔(例如15分钟)重新优化系统,同时通过未来的智能电网通信系统通过与各个PEV交换信号来调节总线电压,从而最大程度地减少时段T(例如24小时)内的系统损耗。充电器。基于变电站变压器的允许负载水平并在三个指定的充电时区内考虑PEV所有者的偏好/优先级来进行调度。从最高优先级用户开始,H-LMA将在选定的优先级时区内分配PEV的充电,以最大程度地减少时段T内的总系统损耗,同时将网络运行标准(如发电和总线电压)保持在其允许范围内。给出了针对不同充电方案的仿真结果,并进行了比较,以证明H-LMA在连接到几个装有PEV的低压住宅网络的改进型IEEE 23 kV配电系统中的性能。本文的主要贡献在于,对正在研究的智能电网进行了详细的仿真/分析,并从准确性和协调执行时间的角度突出了T值和T值对所提出的协调方法的性能的影响。

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