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Power plants coordination for economic and environmental load dispatch of thermal power plants with wind generation systems

机译:发电厂协调风力发电系统的火力发电厂的经济和环境负荷分配

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Economic load dispatch (ELD) and economic emission dispalch (EED) have been applied to obtain generation scheduling of thermal power plants at optimum fuel cost and emissions. Due to limited availability of quality coal, issue of environmental emissions and high prices of coal, installation of renewable energy systems arc suggested in power grid. Renewable energy system preferably wind generators arc used in co-working with thermal plant which reduces generation cost, coal requirement and environmental emissions. This paper presents Newton-Raphson method to obtain ELD and EED. System simulation and programming is carried out in MATLAB~® environment. Analysis has been made on generation cost and for nitrous oxides emissions only due to its harmful effects and its rising tendency with excess air. Price penalty factor is also calculated to determine emission cost. Doubly fed induction generator (DFIG) is suggested as wind energy systems in combination with coal-based thermal plant. Performance results related to generation scheduling, transmission line loading, bus voltages, total cost and environmental emissions are shown for coal-based thermal power plant and with co-generation, The investigation shows that with co-generation, coal-based thermal power plant runs at minimum emissions level which further reflects on the generation economy.
机译:已应用经济负荷分配(ELD)和经济排放调度(EED)来以最佳燃料成本和排放量获得火力发电厂的发电调度。由于优质煤炭的供应有限,环境排放问题和煤炭价格高昂,建议在电网中安装可再生能源系统。可再生能源系统最好是与热电厂一起使用的风力发电机,这可以降低发电成本,煤炭需求和环境排放。本文提出了牛顿-拉夫森法来获得ELD和EED。系统仿真和编程在MATLAB〜®环境中进行。仅对发电成本和一氧化二氮排放进行了分析,这仅是由于其有害影响和过量空气导致的上升趋势。还计算了价格惩罚因子以确定排放成本。建议将双馈感应发电机(DFIG)与基于煤的热电厂结合起来用作风能系统。显示了与煤热电厂和热电联产相关的发电调度,输电线路负荷,母线电压,总成本和环境排放的性能结果。调查显示,在热电联产的情况下,煤热电厂的运行最低排放水平,这进一步反映了发电经济。

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