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In this paper, a nonlinear passivity-based control strategy based on stability in the sense of Lyapunov (Second method) and sliding mode control applied to Euler-Lagrange systems (robot arms) and extended to the PHANToM Premium 1.0 haptic device for purposes of local haptic guidance rehabilitation and medical diagnosis in people who have some motor impairment (on upper limb) is designed and implemented.
This paper presents the design of a motion control strategy based on passivity theory and energy analysis applied to Euler-Lagrange (E-L) systems, particularly to robot manipulators and with purpose to haptic devices. The performance of a robotic structure depends of a proper design of a motion control technique in a regulation action or trajectory tracking in its workspace. With the purpose to proof...
In this paper a PID control applied particularly in robot manipulators. To understand the development of the proposal presents a mathematical preliminary section we used, we explicitly describe relevant aspects of kinematics and dynamics of the haptic device Phantom Premium 1.0, technology and mathematical models, and the design and experimental results of PID control based on passivity, the type...
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