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Development of Pneumatic Master-Slave Hand and Joint Control

Nobutaka TSUJIUCHI, Takayuki KOIZUMI, Shinya Nishino, Hiroyuki Komatsubara, Tatsuwo Kudawara, Masanori HIRANO

Year
2008
Citations
3
Access
Open access

Abstract

Recently, research and development has focused on robots that work in place of people. It is necessary for robots to perform the same flexible motions as people. Additionally, such robots need to incorporate high-level safety features in order not to injure people. For realization of such robots, we need to develop a robot hand that functions like a human hand. At the same time, this type of robot hand can be used as an artificial hand. Here, we present artificial muscle-type pneumatic actuators as the driving source of a robot hand that is both safe and flexible. Some development of robot hands using pneumatic actuators has already taken place. But, until now, when a pneumatic actuator is used, a big compressor is needed. So, the driving system also needs to be big; enlargement of the driving system is a major problem. Consequently, in this research, we develop a low-pressure, low-volume pneumatic actuator for driving a robot hand that works flexibly and safely on the assumption that it will be in contact with people. We develop a five-fingered robot hand with pneumatic actuators. And, we construct a master-slave system to enable the robot hand to perform the same operations as a human hand. We make a 1-link arm that has one degree of freedom using a pneumatic actuator, and construct a control system for the 1-link arm and verify its control performance.

Keywords

RobotActuatorPneumatic actuatorConstruct (python library)Control engineeringEngineeringPneumatic cylinderRobot controlComputer scienceSimulation

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