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Research on Bi-level Optimal Operation of Microgrid in Distribution Network

机译:配网微电网的双层优化运行研究

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In view of the current large-scale centralized wind power and photovoltaic power generation in different regions of China, there is a serious phenomenon of abandoning wind and photovoltaic power, in order to enhance the capacity to absorb wind/photovoltaic power, this paper establishes a bi-level optimal operation model with source-load interaction in the framework of AC/DC hybrid microgrid connected to the distribution network. In load level, demand response model based on time-of-use price is introduced to satisfy users satisfaction as a premise, which guides users to change their electricity consumption habits so as to make certain shift in load and improve the accommodation rate of wind/photovoltaic power; The source level uses the output of the wind turbine, photovoltaic array, micro turbine and fuel cell as the decision variables and the daily economic cost as the objective function to obtain the optimal output combination. Finally, Based on the power consumption data of industrial users in a certain area, this linear optimization model is simulated and solved by using MATLAB, and simulation results verifies the validity and rationality of the proposed optimization operation model.
机译:针对目前我国不同地区大规模集中风电和光伏发电的情况,存在严重的风电和光伏发电废弃现象,为提高吸收风电/光伏发电的能力,本文建立了在连接到配电网的AC / DC混合微电网的框架中,具有源-负载交互作用的二级最优运行模型。在负荷水平上,引入了基于分时电价的需求响应模型,以满足用户满意度为前提,指导用户改变用电习惯,以使负荷有一定的变化,提高风电的适应率。光伏发电源级别将风力涡轮机,光伏阵列,微型涡轮机和燃料电池的输出作为决策变量,并将每日经济成本作为目标函数,以获得最佳的输出组合。最后,基于一定区域内工业用户的能耗数据,利用MATLAB对该线性优化模型进行了仿真和求解,仿真结果验证了所提出的优化运行模型的有效性和合理性。

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