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A Risk-Based Gaming Framework for VPP Bidding Strategy in a Joint Energy and Regulation Market

机译:能源与法规联合市场中基于风险的VPP竞价策略游戏框架

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This paper presents a risk-based game theoretic model for virtual power plant (VPP) bidding strategy in both energy and balancing markets, in the presence of conventional generation companies (GenCos) as rivals. The objective is to provide a method for finding strategic bidding of VPP comprising traditional units, wind turbine, interruptible and shiftable loads along with other strategic rivals. In this regard, a novel shifting load scheme is introduced into the VPP portfolio in which VPP is penalized based on shifting load amount and shifting load time as well. A bi-level mathematical program with equilibrium constraint (MPEC) is represented for modeling behavior of each producer in which the upper level deals with profit maximization of each strategic unit and the lower level encompasses social welfare maximization considering transmission constraints. Power transfer distribution factors are employed to model transmission constraints. The proposed bi-level problem is converted to a traceable mixed-integer linear programming problem using duality theory and Karush-Kuhn-Tucker optimization conditions. Simultaneous solution of all MPECs forms an equilibrium problem with equilibrium constraint that results in market Nash equilibrium point. Finally, information gap decision theory is employed for modeling load price uncertainty and evaluating risk of VPP decision making. The proposed model is tested on a standard IEEE-24 bus system, and the accuracy of the results is indicated.
机译:本文介绍了在传统发电公司(GenCos)作为竞争对手的情况下,能源和平衡市场中虚拟电厂(VPP)投标策略的基于风险的博弈模型。目的是提供一种用于寻找VPP的战略投标的方法,其包括传统单元,风力涡轮机,可中断和可移动的负载以及其他战略对手。在这方面,一种新颖的变速负载方案被引入到VPP产品组合中,其中VPP也会基于变速负载量和变速负载时间受到惩罚。表示了一个具有均衡约束的双层数学程序(MPEC),用于对每个生产者的行为进行建模,其中上级处理每个战略单位的利润最大化,而下级则包括考虑传输约束的社会福利最大化。功率传输分配因子用于对传输约束进行建模。利用对偶理论和Karush-Kuhn-Tucker优化条件,将提出的双层问题转换为可追溯的混合整数线性规划问题。所有MPEC的同时解形成带有均衡约束的均衡问题,导致市场纳什均衡点。最后,采用信息缺口决策理论对负荷价格不确定性进行建模,并评估VPP决策的风险。所提出的模型在标准IEEE-24总线系统上进行了测试,并指出了结果的准确性。

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