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Interactive Dispatch Modes and Bidding Strategy of Multiple Virtual Power Plants Based on Demand Response and Game Theory

机译:基于需求响应和博弈论的多虚拟电厂交互式调度模式与竞价策略

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摘要

This paper examines operation models of multiple virtual power plants (multiVPPs), aiming at unified management of the multiVPP through VPP central controller, which reveals the controllability of the VPP as source and load in general. Two operation models will be introduced in this paper: 1) VPP dispatch model; and 2) the game theoretic model for multiVPP dispatch. In the VPP dispatch model, considering interactive coordination between VPP and energy consumers, a demand response model based on time-of-use pricing mechanism and interruptible loads is employed. And then the optimal results of VPP dispatch model are applied in the game theoretic model for multiVPP dispatch. During the process of market competition, the bidding strategy of each VPP is determined by its affordable power output and fuel cost. To solve the inherent variability and unpredictability of the renewable generation sources, the multitime scale rolling scheduling strategy is adopted. Finally, taking the multiVPP, which consists of various distributed generations and battery storage devices, as an example, variables including transferred load, compensation capacity, optimal bidding strategy, and profits for each VPP are obtained. From the analysis of the results, the method serves as a foundation for dispatch of multiVPP.
机译:本文研究了多个虚拟电厂的运行模型,旨在通过VPP中央控制器对multiVPP进行统一管理,从而揭示了VPP作为源和负荷的可控性。本文将介绍两种操作模型:1)VPP调度模型; 2)multiVPP调度的博弈模型。在VPP调度模型中,考虑了VPP与能源消费者之间的交互协调,采用了基于使用时间定价机制和可中断负载的需求响应模型。然后将VPP调度模型的最优结果应用于针对多VPP调度的博弈模型。在市场竞争过程中,每个VPP的竞标策略取决于其可承受的功率输出和燃料成本。为了解决可再生能源的内在变异性和不可预测性,采用了多时间尺度滚动调度策略。最后,以由多个分布式发电和电池存储设备组成的multiVPP为例,获得变量,包括转移的负荷,补偿能力,最优投标策略以及每个VPP的利润。通过对结果的分析,该方法为multiVPP的调度奠定了基础。

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