Title :
Modelling and control of a twin rotor multi-input multi-output system
Author :
Ahmad, S.M. ; Chipperfield, A.J. ; Tokhi, M.O.
Author_Institution :
Dept. of Autom. Control & Syst. Eng., Sheffield Univ., UK
Abstract :
A dynamic model for the characterisation of a one-degree-of-freedom (DOF) twin rotor MIMO system (TRMS) in hover is extracted using a black-box system identification technique. Its behaviour in certain aspects resembles that of a helicopter, with a significant cross-coupling between longitudinal and lateral directional motions. Hence, it is an interesting identification and control problem. Identification for a 1 DOF rigid-body, discrete-time linear model is presented in detail. The extracted model is employed for designing and implementing a feedforward/open-loop control. Open-loop control is often the preliminary step for development of more complex feedback control laws. Hence, the paper also investigates open-loop control strategies using shaped command inputs for resonance suppression in the TRMS. Digital low-pass and band-stop (Butterworth) shaped inputs are used on the TRMS testbed, based on the identified vibrational modes. A comparative performance study is carried out and the results presented. The low-pass filter is shown to exhibit better vibration reduction
Keywords :
Butterworth filters; MIMO systems; autoregressive moving average processes; band-stop filters; discrete time systems; feedback; feedforward; frequency-domain analysis; frequency-domain synthesis; helicopters; identification; linear systems; low-pass filters; vibration control; 1 DOF rigid-body; 1 DOF twin rotor MIMO system; band-stop Butterworth shaped inputs; black-box system identification technique; digital low-pass shaped inputs; discrete-time linear model; dynamic model; feedforward/open-loop control; hover; resonance suppression; shaped command inputs; twin rotor multi-input multi-output system; vibration reduction; vibrational modes; Feedback control; Helicopters; Low pass filters; MIMO; Open loop systems; Resonance; Shape control; System identification; Testing; Transmission line measurements;
Conference_Titel :
American Control Conference, 2000. Proceedings of the 2000
Conference_Location :
Chicago, IL
Print_ISBN :
0-7803-5519-9
DOI :
10.1109/ACC.2000.879495