基于Nash-SFE均衡的电力市场技术虚拟电厂两阶段决策

H. Nezamabadi, V. Vahidinasab
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引用次数: 8

摘要

考虑到地理位置和网络的限制,技术虚拟电厂将分布式能源(DERs),包括分布式发电(dg)和需求响应(DR)程序集成到配电系统中。因此,tvpp促进了电力需求商积极参与电力市场并优化其运行。本文提出了一个两阶段的TVPP决策模型。在第一阶段,TVPP通过非线性规划(NLP)最小化成本。在这个阶段,考虑了DG和DR约束(即DG发电和最大负荷削减的限制)和配电系统约束(即交流潮流和电压限制)。在第二阶段,通过供给函数均衡(SFE)模型来表示每个供应商的战略行为。因此,TVPP的竞价策略通过Nash-SFE表示为日内电力市场。假设一个统一的定价机制用于市场结算和计算供应商销售能源的利润。一个典型的配电测试系统被认为是一个在PCC点与上游网络连接的TVPP。在一天的三个不同负荷水平下调查TVPP的参与情况。研究表明,随着电力需求的增加,TVPP在电力市场中所占的份额会越来越大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two stage decision making of technical virtual power plants in electricity market via Nash-SFE equilibrium
Considering the geographic location and the network constraints, technical virtual power plants (TVPPs) integrate distributed energy resources (DERs), including distributed generations (DGs) and demand response (DR) programs, into the distribution system. Therefore, TVPPs facilitate the active participation of DERs in the electricity markets and the optimal operation of them. In this paper, a two stage model for decision making of TVPP is proposed. In the first stage, TVPP minimize its cost with a non-linear programming (NLP). In this stage, DG and DR constraints (i.e. limitations of DG generation and maximum load curtailment) and distribution system constraints (i.e. AC power flows and voltage limits) are considered. In the second stage, the strategic behavior of each supplier is represented via a Supply Function Equilibrium (SFE) model. Therefore, the bidding strategy of TVPP is represented in an intraday electricity market via Nash-SFE. A uniform pricing mechanism is assumed for the market settlement and calculating the supplier profit from selling energy. A typical distribution test system is considered as a TVPP which is connected to the upstream network at a point of common coupling (PCC). Participation of TVPP is investigated in three different load levels of a day. It is demonstrated that the TVPP can get a greater share in electricity market with demand increasing.
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