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A mixed integer linear programming model for unit commitment of thermal plants with peak shaving operation aspect in regional power grid lack of flexible hydropower energy

机译:缺乏灵活水电能源的区域电网火电厂机组调峰混合承诺的混合整数线性规划模型

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Recently, the booming electricity demand and intermittent energy has sharply increased the peak shaving pressure in China. However, for a majority of regional power grids in China, the installed capacity of flexible energy (like hydropower and pumped-storage) is small and the thermal plants are asked to respond the sudden load change at peak periods. The existing method based on specialist experience and historical information may generate inferior solutions and fail to reduce the peak pressure. Thus, a practical mixed integer linear programming (MILP) model is developed for unit commitment of thermal plants with peak shaving operation aspect in regional power grid lack of flexible hydropower energy, where the goal is chosen to minimize the peak-valley difference of the residual load series obtained by subtracting all the thermal generation from the original load curve while satisfying the necessary physical constraints. The MILP model is used to the thermal system in the China's largest regional power grid, East China Power Grid. The simulations show that the MILP model can effectively smooth the residual load curve by gathering power generation of thermal plants at peak periods. Therefore, an alternative tool is provided to alleviate the peak pressure of thermal-dominant regional power grid in China. (C) 2019 Elsevier Ltd. All rights reserved.
机译:近来,电力需求的旺盛和间歇性能源的使用极大地增加了中国的削峰压力。但是,对于中国大多数区域性电网而言,柔性能源(如水力发电和抽水蓄能)的装机容量很小,要求火力发电厂在高峰期应对负荷的突然变化。基于专家经验和历史信息的现有方法可能会产生较差的解决方案,并且无法降低峰值压力。因此,开发了一种实用的混合整数线性规划(MILP)模型,用于在缺乏灵活水电能源的区域电网中具有调峰运行方式的火电厂的机组承诺,其目的是使残差的峰谷差异最小化在满足必要的物理约束的情况下,通过从原始载荷曲线中减去所有热量生成而获得的载荷序列。 MILP模型用于中国最大的区域电网华东电网的热力系统。仿真表明,MILP模型可以通过收集高峰时段的热电厂发电来有效地平滑剩余负荷曲线。因此,提供了一种替代工具来缓解中国以热力为主的区域电网的峰值压力。 (C)2019 Elsevier Ltd.保留所有权利。

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