DocumentCode :
2882863
Title :
Compensation of backlash for improving the efficiency of flexible actuator in bilateral teleoperation system
Author :
Mitsantisuk, Chowarit ; Ohishi, Kiyoshi ; Katsura, Seiichiro
Author_Institution :
Dept. of Electr. Eng., Nagaoka Univ. of Technol., Nagaoka, Japan
fYear :
2011
fDate :
7-10 Nov. 2011
Firstpage :
4220
Lastpage :
4225
Abstract :
Teleoperation systems provide human with the ability to interact unknown environment from a remote side which may be dangerous, hazardous, or difficult to access. This paper addresses the development of a bilateral controller for improving the efficiency of a flexible actuator. Based on various identification results from the different bending angles of thrust wire, the system model for a flexible actuator is established and formulated as a one-mass system with variable backlash and friction. When the thrust wire bends in the different angles, the dead-zone backlash characteristics are varied due to the contact surface between the inner wire and outer tube. Therefore it is not quite possible to compensate this non-linearity effects in a real-time. To overcome the inherent problem of backlash and vibration in the thrust wire, the load-side encoder is mounted to measure the end-effector movement. The information transformation technique called, a modal space design is proposed to achieve the targets of bilateral control and suppress this non-linearity effect of backlash. By using the proposed method, it is not necessary to estimate backlash parameters. This algorithm is verified through the identification and experimental results of master and slave robots with thrust wire.
Keywords :
actuators; end effectors; parameter estimation; telerobotics; backlash compensation; backlash nonlinearity effect; backlash parameter estimation; bending angles; bilateral controller; bilateral teleoperation system; dead-zone backlash characteristics; end-effector movement; flexible actuator efficiency improvement; friction; information transformation technique; inner wire; load-side encoder; master robots; modal space design; one-mass system; outer tube; slave robots; thrust wire; Actuators; Force; Friction; Observers; Robots; Wires;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
IECON 2011 - 37th Annual Conference on IEEE Industrial Electronics Society
Conference_Location :
Melbourne, VIC
ISSN :
1553-572X
Print_ISBN :
978-1-61284-969-0
Type :
conf
DOI :
10.1109/IECON.2011.6120001
Filename :
6120001
Link To Document :
بازگشت