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城市大型配电网调度智能运行系统设计 被引量:3

Intelligent Running System Design of Large Distribution Network in City
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摘要 当下城市大型配电网数据流处理方法存在一定的局限性和不安全性,不能实现配电网高效运行;为此,提出一种基于城市大型配电网调度的智能运行系统模型的建立;该系统根据城市配电网应用特点及其设备种类,依照不同智能数据运行的模式,为达到最高效的智能运行效率,选择合理的系统运行组件;在此基础上,对配电网调度智能运行系统设计进行建模,得出模型函数,实现数据设计的应用;从绿色环境可再生能源的本质出发,在配电网负荷一定的前提下,使电能与模型函数成正比,从而完成配电网调度智能运行系统的设计;仿真实验证明,所提出的设计理念可以实现配电网调度系统运行的实时性、有效性和可靠性,为今后城市大事配电网智能运行系统设计研究提供坚实的基础。 At present,the data stream processing method of urban large-scale distribution network has some limitations and insecurity,and it can not realize the efficient operation of distribution network.Therefore,a model of intelligent operation system based on urban large-scale distribution network dispatching is put forward.The system according to the application characteristics of urban distribution network and its equipment type,according to different intelligent data operation mode,in order to achieve the most efficient intelligent operation efficiency,select the reasonable system operation component.On this basis,the intelligent operation system design of distribution network scheduling is modeled,and the model function is obtained to realize the application of data design.Starting from the essence of the green environment and renewable energy,the electrical energy is directly proportional to the model function under the premise that the distribution network load is certain,so as to complete the design of the intelligent operation system of distribution network scheduling.Simulation results show that the proposed design can achieve real-time and effective distribution network dispatching system of operation and reliability,provide a solid foundation for the future design of big city distribution network intelligent operation system research.
作者 袁野 屈超 翟铁军 Yuan Ye,Qu Chao,Zhai Tiejun(State Grid Tieling Power Electric Supply Company,Tieling 112000,Chin)
出处 《计算机测量与控制》 2018年第5期125-127,152,共4页 Computer Measurement &Control
关键词 城市 大型配电网 调度 智能运行 设计方法 cities large distribution networks scheduling intelligent operation design method
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