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Optimal Coordination of Electric Vehicles for Virtual Power Plants With Dynamic Communication Spectrum Allocation

机译:动态通信谱分配的虚拟发电厂电动车辆的最佳协调

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This article proposes an optimal coordinated scheduling of electric vehicles (EVs) for a virtual power plant (VPP) considering communication reliability. Recent advancements on wireless technologies offer flexible communication solutions with wide coverage and low-cost deployment for smart grid. Nevertheless, the imperfect communication may deteriorate the monitoring and controlling performance of distributed energy resources. An interactive approach is presented for combined optimization of dynamic spectrum allocation and EV scheduling in the VPP to coordinate charging discharging strategies of massive and dispersed EVs. In the proposed approach, a dynamic partitioning model of the multi-user multi-channel cognitive radio is used to cope with the vehicle-to-grid (V2G) communication issue due to variable EV parking behaviors, and a two-stage V2G dispatch scheme is proposed for the wind-solar-EV VPP to maximize its overall daily profit. Furthermore, the effects of packet loss probability on the VPP scheduling performance and battery degradation cost are thoroughly analyzed and investigated. Comparative studies have been implemented to demonstrate the superior performance of the proposed methodology under various imperfect communication conditions.
机译:本文提出了考虑到沟通可靠性的虚拟电厂(VPP)的电动车辆(EVS)的最佳协调调度。最近的无线技术的进步提供了灵活的通信解决方案,具有广泛的覆盖范围和智能电网的低成本部署。然而,不完美的通信可能会恶化分布式能源的监测和控制性能。提供了一种交互式方法,用于组合优化VPP中的动态频谱分配和EV调度,以协调大规模和分散的EV的充电放电策略。在所提出的方法中,使用多用户多通道认知无线电的动态分区模型用于应对由于变量EV停车行为而引起的车辆到网格(V2G)通信问题,以及两级V2G调度方案建议为风力 - 太阳能-ev VPP最大限度地提高其整体日益利润。此外,彻底分析和研究了分组损耗概率对VPP调度性能和电池劣化成本的影响。已经实施了比较研究以证明在各种不完善通信条件下提出的方法的卓越性能。

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