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电网调控机器人设计思路
引用本文:张晓华,冯长有,王永明,王轶禹,王晶,邓勇,王扬,韩晔.电网调控机器人设计思路[J].电力系统自动化,2019,43(13):1-8.
作者姓名:张晓华  冯长有  王永明  王轶禹  王晶  邓勇  王扬  韩晔
作者单位:国家电力调度控制中心,北京市,100031;国网福建省电力有限公司,福建省福州市,350003
基金项目:国家重点研发计划资助项目(2018YFB0904500);国家电网公司科技项目(5101/2018-21005A)
摘    要:随着中国电网规模持续扩大和运行特性日趋复杂,电网调控业务复杂度及调控人员承载力强度日益增加。文中从电网实时调控业务出发,设计了电网调控机器人整体架构,详细阐述了智能学习、智能决策、智能监视、智能执行、智能交互等5个功能模块的设计思路;然后介绍了相应的关键技术,并给出了适用的6类调控应用场景。

关 键 词:互联电网  人工智能  调控机器人  实时调控
收稿时间:2018/7/16 0:00:00
修稿时间:2019/5/17 0:00:00

Design Ideas of Robotic Dispatcher for Power Grid
ZHANG Xiaohu,FENG Changyou,WANG Yongming,WANG Yiyu,WANG Jing,DENG Yong,WANG Yang and HAN Ye.Design Ideas of Robotic Dispatcher for Power Grid[J].Automation of Electric Power Systems,2019,43(13):1-8.
Authors:ZHANG Xiaohu  FENG Changyou  WANG Yongming  WANG Yiyu  WANG Jing  DENG Yong  WANG Yang and HAN Ye
Affiliation:National Electric Power Dispatching and Control Center, Beijing 100031, China,National Electric Power Dispatching and Control Center, Beijing 100031, China,State Grid Fujian Electric Power Company, Fuzhou 350003, China,National Electric Power Dispatching and Control Center, Beijing 100031, China,National Electric Power Dispatching and Control Center, Beijing 100031, China,State Grid Fujian Electric Power Company, Fuzhou 350003, China,National Electric Power Dispatching and Control Center, Beijing 100031, China and State Grid Fujian Electric Power Company, Fuzhou 350003, China
Abstract:As the scale of power grid of China continues to expand and the operation characteristics become increasingly complex, the complexity of dispatching and control business of power grid and the burden of dispatchers are increasing. According to the real-time dispatching and control business of power grid, this paper designs an overall architecture of robotic dispatcher for power grid. The design ideas of five functional modules such as intelligent learning, intelligent decision-making, intelligent monitoring, intelligent execution and intelligent interaction are elaborated. Then the corresponding key technologies are described. The six types of application scenarios of dispatching and control are given.
Keywords:interconnected power grid  artificial intelligence(AI)  robotic dispatcher  real-time dispatching and control
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