Stability Region Evaluation of Control Inputs by Fuzzy-Ttype Lyapunov Function for Nonlinear Control System

  • Kuwata, Akihiko (Department of Electrical and Electronic Systems, University of Osaka Prefeeture) ;
  • Kawamoto, Shunji (Department of Electrical and Electronic Systems, University of Osaka Prefeeture) ;
  • Kanetaka, Iwao (Department of Electrical and Electronic Systems, University of Osaka Prefeeture) ;
  • Takino, Katsuhiko (Department of Electrical and Electronic Systems, University of Osaka Prefeeture) ;
  • Ishigamr, Atsushi (Department of Electrical and Electronic Systems, University of Osaka Prefeeture) ;
  • Taniguchi, Tsunco (Department of Electrical and Electronic Systems, University of Osaka Prefeeture) ;
  • Tanaka, Hiroyuki (Technical Research Center, The Kansai Electric Power Co., Inc)
  • Published : 1994.10.01

Abstract

Electric Power system is a large scale nonlinear control one. Therefore, nonlinear control is desirable for the stabilizing, and it is thought that to establish an analytical method for optimal control inputs of AVR(automatic voltage regulator) and GOV(governor) is an important subject. In this paper, as a simple case, one-machine infinite-bus electric power model system with GOV is treated under the three kinds of control inputs; (i) fuzzy control input, (ii) linear control input and (iii) no control input. Next, the stability for each case is analyzed, and the three-dimensional stability regions and control responses are evaluated and compared. Finally, it is concluded that the linear control input does not necessarily give a good region and response, and the fuzzy one is better than others.

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