Title : 
Estimation of a Multimass System Using the LWTLS and a Coefficient Diagram for Vibration-Controller Design
         
        
            Author : 
Yoshioka, Yasutoshi ; Hanamoto, Tsuyoshi
         
        
            Author_Institution : 
Fuji Electr. Adv. Technol. Co., Ltd., Tokyo
         
        
        
        
        
        
        
            Abstract : 
Vibration caused by mechanical resonance and time delay caused by signal detection and transmission degrade the control performance of a servo controller for a multimass mechanical system. A precise numerical model that represents resonance characteristics and time delay is necessary to design a desired control system. This paper presents an identification method using the iterative process of the linearized and weighted total least-squares method. The proposed method derives a transfer function without any prior knowledge of resonance characteristics and time delay. The order of the transfer function is determined with a coefficient diagram that shows coefficients of the denominator of the transfer function. Identification results with an experimental setup are shown to demonstrate the performance of the proposed method. A velocity servo controller with vibration-suppression control is designed with the transfer function, and control performance is verified with the experimental setup to validate the transfer function.
         
        
            Keywords : 
least squares approximations; servomechanisms; transfer functions; vibration control; coefficient diagram; least-squares method; mechanical resonance; multimass mechanical system; multimass system; resonance characteristic; signal detection; time delay; transfer function; velocity servo controller; vibration controller design; vibration suppression control; Control systems; Degradation; Delay effects; Mechanical systems; Resonance; Servomechanisms; Signal detection; Transfer functions; Velocity control; Vibration control; Mechanical resonance; multimass mechanical system; system identification; time delay;
         
        
        
            Journal_Title : 
Industry Applications, IEEE Transactions on
         
        
        
        
        
            DOI : 
10.1109/TIA.2008.916601