연산지연을 가진 이산시간 레규레이터에 대한 강인한 안정성 유계

Robust Stability Bounds for Discrete-Time Regulators with Computation Delays

  • 배종일 (부경대학교 전기공학과)
  • 발행 : 1998.03.01

초록

Robust stability of discrete-time regulators which utilize state predictors to compensate computation delays is considered. Novel expressions for the return difference matrices and the complementary sensitivity matrices at the input and the output of the regulator are found to obtain simple bounds for unstructured perturbations. Robust stability for pertubations of the system matrix and /or the gain matrix is also considered. under certain restriction on the nominal system simple bounds for the pertubations are obtained directly from the characteristic equation. It is shown that as far as the effect of the computation delays concerns these bounds have explicit relation to those for the unstructured pertubations.

키워드

참고문헌

  1. IEEE Trans. Automat. Contr. v.AC-30 no.6 Optimal Digital Feedback Control Systems Counting Computation Time of Control Laws T. Mita
  2. IEEE Trans. Automat. Contr. v.AC-22 no.6 Robustness of Linear Quardratic State Feedback Designs in the Presence of System Uncertainty R. V. Patel;M. Toda;B. Sirdhar
  3. IEEE Trans. Automat. Contr. v.AC-26 Robustness Results in Linear Quadratic Gaussian Based Multlivariable Control Design N. A. Lehtomaki;N. R. Sandell, Jr.;M. Athans
  4. IEEE Trans. Automat. Contr. v.AC-31 no.2 Guaranteed Stability Margins for the Discrete-Time Linear Quardratic Optimal Regulator U. Shaked
  5. IEEE Trans. Automat. Contr. v.AC-26 no.1 Mutlivariable Feedback Design: Concepts for a Classical/Modern Synthesis J. C, Doyle;G. Stein
  6. Automatica no.21 Robustness with Simultaneous Pole and Zero Movement across J ω-axis I. Postlethwaite;Y. K. Foo
  7. IEEE Trans. Automat. Contr. v.AC-27 no.2 Model Reduction via Balanced State Space Representations L. pernebo;L. Silverman
  8. 最小2乘法による實驗デ-タの解析プログラムSALS 中川徹;小柳義夫