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Optimal Scheduling of Vehicle-to-Grid Energy and Ancillary Services

机译:车辆至电网能源和辅助服务的最佳调度

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Vehicle-to-grid (V2G), the provision of energy and ancillary services from an electric vehicle (EV) to the grid, has the potential to offer financial benefits to EV owners and system benefits to utilities. In this work a V2G algorithm is developed to optimize energy and ancillary services scheduling. The ancillary services considered are load regulation and spinning reserves. The algorithm is developed to be used by an aggregator, which may be a utility or a third party. This algorithm maximizes profits to the aggregator while providing additional system flexibility and peak load shaving to the utility and low costs of EV charging to the customer. The formulation also takes into account unplanned EV departures during the contract periods and compensates accordingly. Simulations using a hypothetical group of 10 000 commuter EVs in the ERCOT system using different battery replacement costs demonstrate these significant benefits.
机译:车辆到电网(V2G),从电动汽车(EV)到电网的能源和辅助服务的提供,有可能为EV所有者提供经济利益,并为公用事业提供系统利益。在这项工作中,开发了V2G算法来优化能源和辅助服务调度。考虑的辅助服务是负载调节和旋转储备。开发该算法以供聚合器使用,该聚合器可以是公用事业公司或第三方。该算法最大程度地提高了汇聚商的利润,同时为公用事业提供了额外的系统灵活性和峰值负载削减,并为客户提供了低廉的EV充电成本。该公式还考虑了合同期内计划外的电动汽车离场,并进行了相应的补偿。在ERCOT系统中使用一组假设的10×000通勤电动汽车进行模拟,并使用了不同的电池更换成本,这些仿真结果证明了这些显着优势。

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