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Optimal contract design for ancillary services in vehicle-to-grid networks

机译:车辆到网格网络中的辅助服务的最佳合同设计

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With the foreseeable large scale deployment of electric vehicles (EVs) and the development of vehicle-to-grid (V2G) technologies, it is possible to provide ancillary services to the power grid in a cost efficient way, i.e., through the bidirectional power flow of EVs. A key issue in such kind of schemes is how to stimulate a large number of EVs to act coordinately to achieve the service request. This is challenging since EVs are self-interested and generally have different preferences toward charging and discharging based on their own constraints. In this paper, we propose a contract-based mechanism to tackle this challenge. Through the design of an optimal contract, the aggregator can provide incentives for EVs to participate in ancillary services to power grid, match the aggregated energy rate with the service request and maximize its own utility. Simulation results are shown to verify the effectiveness of the proposed contract-based mechanism.
机译:通过可预见的大规模部署电动车辆(EVS)和车辆到网格(V2G)技术的开发,可以以成本有效的方式为电网提供辅助服务,即通过双向动力流动EVS。这种方案中的一个关键问题是如何激发大量的EV,以协调才能实现服务请求。这是挑战性,因为EVS是自私的,并且通常对基于自己的约束来充电和放电具有不同的偏好。在本文中,我们提出了一种基于合同的机制来解决这一挑战。通过设计最佳合同,聚合器可以为EVS提供激励,以便参与电网的辅助服务,将聚合的能量率与服务请求相匹配并最大化其自身的实用程序。显示仿真结果显示验证了基于合同的机制的有效性。

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