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新一代电力系统运行状态显示平台构想
引用本文:刘娆,朱全胜,李卫东.新一代电力系统运行状态显示平台构想[J].电力系统自动化,2008,32(5):68-71.
作者姓名:刘娆  朱全胜  李卫东
作者单位:大连理工大学电气工程与应用电子技术系,辽宁省大连市,116024
基金项目:国家自然科学基金资助项目(50577002).
摘    要:电力系统的广泛互联和市场化需要调度人员更深刻地洞察运行状态的变化,更广泛地相互沟通,以避免重大安全事故的发生,而现有运行状态显示手段已不能满足这一要求。以所提出的电力系统运行状态显化概念和动态关联多屏技术为基础,合理运用多通道、多种通信媒体等计算机软硬件和网络通信技术,利用心理学、认知学和人工智能等理论,充分融合现有运行状态分析与显示研究成果,构建基于多通道—动态关联多屏的人—机交互体系,研究基于多种通信媒体的调度员交互(人—人交互)系统,提出运行状态的分层显示构想。借助人因工程学理论反复推究、逐步完善,最终形成一套较为完整的运行状态显化理论体系,构建全新的运行状态显示平台。

关 键 词:电力系统运行状态  人—机交互  人—人交互  可视化  人因工程分析
收稿时间:2007-11-02
修稿时间:2007-12-11

Conception of a New Power System Operating Status Display Platform
LIU Rao,ZHU Quansheng,LI Weidong.Conception of a New Power System Operating Status Display Platform[J].Automation of Electric Power Systems,2008,32(5):68-71.
Authors:LIU Rao  ZHU Quansheng  LI Weidong
Abstract:The development of interconnection and commercialization of power systems demands the operators to thoroughly observe the operating status and extensively communicate with each other,which can help to prevent disasters.However,the current display methods of operating status are not good enough to satisfy the above requirements.Based on the concept of power system operating status display technology and the dynamic content multi-display technology,this paper proposes a new conception of displaying the operating status.In this conception,psychology,cognition and artificial intelligence are introduced,and computer hardware/software and network communication techniques are applied,such as multi-communication media and multi-input channels.To set up the dynamic man-machine interaction system based on the multi-input channels and the dynamic content multi-display technology,and the man-man interaction system for system operators based on the multi-communication media technology,this paper presents a new idea of displaying the multi-layer processing status.Based on the human-factor engineering theory and tremendous investigation,an operating status display theory and a brand new power system display system are developed.
Keywords:power system operating status  man-machine interaction  man-man interaction  visualization  human-factor engineering
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