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Control using joint torque sensor of robot arm with two‐inertia resonance: Comparison with control using state‐estimation observer

Naoyuki Takesue, Junji FURUSHO, Koji Fujinaga

Year
2006
Citations
4

Abstract

Abstract Most industrial robots are driven through reduction gears such as Harmonic Drives and RV gears. Due to the flexibility of the drive system, vibratory behavior occurs during operation. When flexibility is considered, the drive system of the robot joint can be modeled as a resonant mechanical system called a two‐inertia system. Conventionally, studies of two‐inertia system have discussed semiclosed‐loop control using only motor information and a state observer. On the other hand, joint torque sensing of robots has been studied in the harmonic drives that are widely used in robot joints. The joint torque sensor is becoming available with higher performance. In this paper, we consider the control of a robot arm having two‐inertia resonance by using the joint torque sensor. The performance of the torque sensor and that of the observer are compared. © 2006 Wiley Periodicals, Inc. Electr Eng Jpn, 156(2): 75–84, 2006; Published online in Wiley InterScience ( www.interscience.wiley.com ). DOI 10.1002/eej.20226

Keywords

Control theory (sociology)TorqueRobotInertiaHarmonic driveEngineeringFlexibility (engineering)Observer (physics)Robotic armControl engineering

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