Unit commitment of thermal units in integration with wind and solar energy considering ancillary service management using priority list(IC) based genetic algorithm

Md Sajid Alam, M. S. Kumari
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引用次数: 7

Abstract

Demand for electricity is gradually increasing in India and use of more thermal power generation is leading to increased emissions. The effect of emission of thermal power plant is adverse to the environment; we cannot largely depend on thermal power plant for power generation. So, this work considered the integration of thermal units with the renewable sources like solar and wind, while accounting for ancillary service management and renewable energy uncertainties. Unit Commitment (UC) and Economic load dispatch (ELD) have significant research applications in power systems and optimize the total production cost for the forecasted load demand of particular hour. UC decides the turn ON/ turn OFF decision of particular unit/units according to the forecasted load of particular hour optimally while satisfying all constraints of the unit like minimum up and down time, startup and shut down cost constraints. ELD optimizes the operation cost for all scheduled generating units with respect to the forecasted load demands of customers in particular hour. UC and ELD are performed to reduce the total production cost to as minimum as possible, so that customer will get electricity at minimum cost. This paper presents a Genetic algorithm and priority list approach for wind and solar integrated system having thermal generators, for solving UC problem. The dynamic programming approach is used for the UC and ELD and production cost of each hour is calculated for comparison purpose.
考虑辅助服务管理的基于优先级列表(IC)的遗传算法的光热一体化机组承诺研究
印度的电力需求正在逐渐增加,更多地使用火力发电导致排放量增加。火力发电厂的排放对环境的影响是不利的;我们不能主要依靠火力发电厂发电。因此,这项工作考虑了热电机组与太阳能和风能等可再生能源的整合,同时考虑了辅助服务管理和可再生能源的不确定性。机组承诺(UC)和经济负荷调度(ELD)在电力系统中具有重要的研究应用价值,它们可以根据预测的特定时段的负荷需求来优化总生产成本。UC在满足机组的所有约束条件,如最小启停时间、启停成本约束的情况下,根据特定小时的预测负荷,最优地决定特定机组/多个机组的开/关决策。ELD根据客户在特定时段的预测负荷需求,优化所有计划发电机组的运行成本。UC和ELD的实施是为了尽可能降低总生产成本,以便客户以最低的成本获得电力。本文提出了一种基于遗传算法和优先级列表的带火电机组的风能和太阳能集成系统的UC问题求解方法。采用动态规划方法对UC和ELD进行计算,并计算每小时的生产成本进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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