Title :
Discrete-Time LTR Synthesis of Delayed Control Systems
Author :
Shen, Jenny H. ; Ray, Asok
Author_Institution :
Mechanical Engineering Department, The Pennsylvaria State University, University Park, PA 16802
Abstract :
This paper focuses on robust compensation of delays within a multi-input multi-output discrete-time feedback loop for application to real-time distributed control systems. The delay compensation algorithm, formulated in this paper, is an extension of the standard loop transfer recovery (LTR) procedure from one-step prediction to the general case of p-step prediction (p¿l). It is shown that the steady-state minimum-variance filter gain is the H2-minimization solution of the relative error between the target sensitivity matrix and the actual sensitivity matrix for p-step prediction (p¿l). This concept forms the basis for synthesis of robust p-step delay compensators (p ≫ l). The proposed control synthesis procedure for delay compensation is demonstrated via simulation of the flight control system of an advanced aircraft.
Keywords :
Aerospace control; Control system synthesis; Delay systems; Distributed control; Feedback loop; Filters; Real time systems; Robust control; Robustness; Steady-state;
Conference_Titel :
American Control Conference, 1992
Conference_Location :
Chicago, IL, USA
Print_ISBN :
0-7803-0210-9