Architecture and Key Technologies of Lightweight Human-Machine Interaction System for Power Grid Dispatching and Control System

被引:0
|
作者
Huang K. [1 ,2 ,3 ]
Zhao K. [1 ,2 ]
Yang L. [4 ]
Yan Z. [1 ,2 ]
Peng H. [1 ,2 ,3 ]
Zhai M. [1 ,2 ,3 ]
机构
[1] NARI Group Corporation, State Grid Electric Power Research Institute, Nanjing
[2] NARI Technology Co. Ltd., Nanjing
[3] State Key Laboratory of Smart Grid Protection and Control, Nanjing
[4] State Grid Hebei Electric Power Corporation, Shijiazhuang
关键词
Human-machine service; Lightweight human-machine interaction; Model-View-ViewModel (MVVM) mode; Unified interface description;
D O I
10.7500/AEPS20180525001
中图分类号
学科分类号
摘要
Under the human-machine interaction system architecture of the traditional power grid dispatching and control system, the client performs a large number of graphic display processes and complex service interactions. The implementation of such a fat client not only consumes a lot of resources, but also has obvious limitations in the realization of multi-terminal unified display. In this paper, a lightweight architecture of human-machine interaction is proposed, and its key technologies such as front-end implementation based on Model-View-ViewModel(MVVM) mode, human-machine service and load balancing, unified interface description specification, are discussed.The lightweight human-machine interaction system based on this architecture can effectively reduce the resource occupancy of the client and better adapt to the needs of the power grid dispatching and control system for human-machine display. © 2019 Automation of Electric Power Systems Press.
引用
收藏
页码:159 / 165
页数:6
相关论文
共 12 条
  • [1] Xu Z., Liu R., Yu A., Et al., Mobile application security technology for smart grid, Automation of Electric Power Systems, 36, 16, pp. 82-87, (2012)
  • [2] Astic J.Y., Bareux G., Buhagiar T., Et al., Control center designs: new functions and challenges for the transmission system operator, IEEE Power and Energy Magazine, 16, 2, pp. 57-66, (2018)
  • [3] Wang M., Han X., Wu L., Et al., CIM/G based Web graphical display technology for power grid dispatching and control systems, Automation of Electric Power Systems, 42, 6, pp. 81-85, (2018)
  • [4] Yan Y., Qiu J., Zi P., Design and realization of a power grid diagram editor based on Web, Power System Protection and Control, 38, 8, pp. 92-96, (2010)
  • [5] Xu H., Ning J., Huang K., Et al., CIM/G based multi-version management and display of graphics, Automation of Electric Power Systems, 41, 24, pp. 164-169, (2017)
  • [6] Li W., Xin Y., Shen G., Et al., Scheme of power grid graphics maintenance and sharing based on CIM/G, Automation of Electric Power Systems, 39, 1, pp. 59-63, (2015)
  • [7] Ren Y., Yao J., Yang Z., Et al., Four-layered framework on EMS graphics subsystem, Automation of Electric Power Systems, 30, 11, pp. 77-80, (2006)
  • [8] Cheng Y., Wu X., Li H., Et al., Graphics wide-area maintenance and browsing technology for smart grid dispatching and control systems, Automation of Electric Power Systems, 41, 14, pp. 171-175, (2017)
  • [9] Xu J., Chen S., Comparison and analysis of VPN based on IPSec and SSL, Computer Engineering and Design, 25, 4, pp. 586-588, (2004)
  • [10] Ren Z., Zhang H., Yan M., Et al., Overview of the research in model-view-controller pattern, Application Research of Computers, 10, pp. 1-4, (2004)