Application of LQR for Phase-Locked Loop Control Systems

  • Khumma, Somyos (Faculty of Engineering and Research Center for Communication and Information Technology King Mongkut's Institute of Technology Ladkrabang) ;
  • Benjanarasuth, Taworn (Faculty of Engineering and Research Center for Communication and Information Technology King Mongkut's Institute of Technology Ladkrabang) ;
  • Isarakorn, Don (Faculty of Engineering and Research Center for Communication and Information Technology King Mongkut's Institute of Technology Ladkrabang) ;
  • Ngamwiwit, Jongkol (Faculty of Engineering and Research Center for Communication and Information Technology King Mongkut's Institute of Technology Ladkrabang) ;
  • Wanchana, Somsak (Faculty of Electrical and Electronics, Chonburi Technical College) ;
  • Komine, Noriyuki (School of Information Technology and Electronics, Tokai University)
  • Published : 2004.08.25

Abstract

A phase-locked loop control system designed by using the linear quadratic regulator approach is presented in this paper. The system thus designed is optimal system when system is in locked state and the parameter value of loop filter which is an active PI filter can be obtained easily. By considering the structure of loop filter of phase-locked loop is included in the process to be controlled, a type 1 servo system can be constructed when voltage control oscillator is considered as an integrator. The integral gain of the proposed system obtained by linear quadratic regulator approach can be used as an optimal value to design the parameter of loop filter. The implemented result in controlling the second-order lag pressure process by using the proposed scheme show that the system response is fast with no overshoot and no steady-state error. Furthermore, the experimental results are also shown in term of output disturbance effect rejection, tracking and process parameter changed.

Keywords