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Integration of Wind Power Generation into a Double- sided Competitive Electricity Market For Profit and Social Welfare Maximization

机译:将风力发电整合到双面竞争电力市场中以实现利润和社会福利的最大化

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Due to the increase in climatic conditions, the world is moving towards renewable energies. Wind power generation (WPG) is fueled by the wind which is almost free, except the operation and maintenance (O/M) costs, it's a clean, variable and uncertain fuel source, which creates the difficult implications of its integration into the power system. With the continuing demand for an alternative rather than conventional power sources, it is vital to integrate WPG into power systems as it is economically viable for the production cost and the electricity prices in the market. This paper presents interior point method (IPM) to solve the optimal power flow (OPF) problem and the integration of WPG with the variation of wind speed to study its effect on locational marginal prices (LMPs), generation costs, total profit and the social welfare in a doublesided competitive electricity market. All generation companies (GENCO) and distribution companies (DISCO) compete to achieve maximum profit and benefit with their bids to the independent system operator (ISO), simulation is carried out using power system analysis toolbox in MATLAB applied on IEEE 6-bus and IEEE 14-bus systems.
机译:由于气候条件的增加,世界正在走向可再生能源。风力发电(WPG)由风力推动,除了操作和维护(O / M)成本外,它是一种干净,可变和不确定的燃料源,这会产生难以实现其在电力系统中的难以实现的影响。随着对替代而非传统电源的持续需求,将WPG集成到电力系统中至关重要,因为在市场生产成本和市场的电力价格上是经济的可行性。本文介绍了内部点方法(IPM),解决了最佳功率流量(OPF)问题,以及WPG与风速变化的集成,以研究其对地方边际价格(LMP),生成成本,总利润和社会影响的影响福利在双手竞争电力市场。所有一代公司(Genco)和分销公司(Disco)竞争以实现最大的利润和福利,以其竞标于独立的系统运营商(ISO),在Matlab中应用于IEEE 6-Bus和IEEE的电力系统分析工具箱进行了模拟14公交系统。

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