Title :
LMI-based position command design of table systems considering compensation for impact force and interference
Author :
Sugiura, Naoto ; Ito, Kazuaki ; Iwasaki, Makoto
Author_Institution :
Dept. of Comput. Sci. & Eng., Nagoya Inst. of Technol., Nagoya, Japan
Abstract :
This paper presents a position command design methodology for table drive systems utilizing for a contact operation. In high performance mechatronic systems utilizing for contact operations such as picking up and/or placing on materials, force control is strongly requested to prevent a damage of materials due to impact force. Moreover interference force from other axis deteriorates position control performance. In this paper, the stability condition of the impact force and interference force are clarified, and the linear matrix inequality (LMI) design framework is applied to improve the control performance, where the position command of the system is theoretically designed under the constraints against the impact force and interference. The effectiveness of the proposed design has been verified by experiments using a prototype.
Keywords :
compensation; drives; force control; linear matrix inequalities; position control; stability; LMI-based position command design methodology; force control; impact force compensation; interference compensation; linear matrix inequalities; position control performance; stability condition; table drive system; Force; Force control; Interference; Position control; Prototypes; Torque; Vibrations;
Conference_Titel :
Mechatronics (ICM), 2015 IEEE International Conference on
Conference_Location :
Nagoya
DOI :
10.1109/ICMECH.2015.7084049