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Demand Response and Wind Farm Integrated Economic Dispatch in Power System

机译:电力系统需求响应与风电场综合经济派遣

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The ever-increasing penetration of intermittent renewable energy resources pushes the grid to prepare more reserves to meet the supply and demand balance. Demand response (DR) is an efficient strategy to reduce the overall load at peak times. In order to fully excavate the application of DR, make DR capable to support the operation of the grid actively at all times, this paper builds a DR and wind farm integrated economic dispatch model. The objective is to minimize the total operation costs, which consist of fuel cost, startup cost, Green House Gas (GHG) emission cost and DR cost. The DR maximum participating time, DR ramp rate constraint are considered. A system with 10 traditional units, 1 large-scale intermittent renewable energy resources generation unit, 3 types of DR including interruptible load, direct load control and load as capacity resource is selected to verify the proposed model. 4 scenarios are selected for the results comparison, the corresponding DR penetration is separately 0%, 10%, 20% and 30%.
机译:间歇可再生能源资源的不断渗透推动电网以准备更多的储备,以满足供需平衡。需求响应(DR)是一个有效的策略,以减少高峰时间的整体负载。为了完全挖掘DR的应用,使得能够始终积极地支持电网的操作,这篇论文建立了博士和风电场综合经济调度模型。目的是最大限度地减少总运营成本,包括燃料成本,启动成本,绿色房屋气体(GHG)发射成本和博士成本。考虑最大参与时间,DR斜率约束。具有10个传统单元的系统,1个大规模间歇可再生能源资源生成单元,选择3种类型的DR,包括可中断负载,直接负载控制和负载作为容量资源,以验证所提出的模型。选择4场景进行结果比较,相应的DR渗透率分别为0%,10%,20%和30%。

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