电力信息物理融合系统的建模分析与控制研究框架

Translated title of the contribution: Modeling analysis and control research framework of cyber physical power systems

赵俊华, 文福拴*, 薛禹胜, 董朝阳

*Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

158 Citations (Scopus)

Abstract

To implement the objective of smart grids, it is essential to introduce the state-of-the-art computing, communication and sensing technologies. Traditionally, the theoretical foundation and methodologies of power systems and information systems are independent. Thus, the existing power system analysis and control methods cannot adequately take into account the impacts of the information system. The cyber physical system (CPS) represents a new research area with a focus on integrating physical and information systems so as to build a new and powerful industrial system. Based on CPS and the characteristics of power systems, the concept of a cyber physical power system (CPPS) framework is presented. Several mathematical tools including the differential and algebraic equation set, finite automation, stochastic process and queueing theory are introduced to formulate the steady-state and dynamic models of CPPS. The steady-state and dynamic analysis of information systems is then introduced, and on this basis, the research direction for reliability and security of CPPS is developed. The networked control of CPPS is finally discussed, and new methods based on the delay and data loss compensation are proposed. © 2011 State Grid Electric Power Research Institute Press.
Translated title of the contributionModeling analysis and control research framework of cyber physical power systems
Original languageChinese (Simplified)
Pages (from-to)1-8
Journal电力系统自动化
Volume35
Issue number16
Online published17 Aug 2011
Publication statusPublished - 25 Aug 2011
Externally publishedYes

Research Keywords

  • 智能电网
  • 信息物理融合系统
  • 电力信息物理融合系统
  • 数学模型
  • 可靠性
  • 安全性
  • Smart grid
  • Cyber physical system
  • Cyber physical power system
  • Mathematical model
  • Reliability
  • Security

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