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Improving force tracking control performance in cooperative robots

Pablo Sánchez‐Sánchez, Marco A. Arteaga

Year
2017
Citations
8
Access
Open access

Abstract

In order to obtain the environment’s information, cooperative robots could need a lot of sensors. A possible solution to reduce the number of sensors might be the use of control–observer structures. In this article, we have designed a control algorithm by using a modified hybrid computed torque method based on the principle of orthogonalization, but in order to avoid the use of tachometers in the implementation, we are including a velocity observer. The stability proof is developed by using the theory of Lyapunov. Simulation of the proposed control structure compared with a well-known control structure via the performance index analysis is presented. Experimental tests are implemented with the control structure that has the best performance index.

Keywords

Computer scienceOrthogonalizationControl theory (sociology)Observer (physics)Stability (learning theory)RobotLyapunov functionLyapunov stabilityControl (management)Tracking (education)

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