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A magnetic bilateral tele-manipulation system using paramagnetic microparticles for micromanipulation of nonmagnetic objects

Mohamed Abou Seif, Amr Hassan, Ahmed H. El-Shaer, Abdelrahman J.K. Alfar, Sarthak Misra, Islam S. M. Khalil

Year
2017
Citations
10

Abstract

This study presents a scaled-bilateral telemanipulation system for magnetic-based control of paramagnetic microparticles. This bilateral control system consists of a haptic device (master-robot) and an electromagnetic system with four orthogonal electromagnetic coils. The electromagnetic system generates magnetic field gradients to control the motion of the microparticle (slave-microrobot). A systematic robust tele-manipulation control design of the microparticles is achieved using disturbance observers (DOBs) to estimate the interaction forces at both the master-robot and slave-microrobot. Experimental results show that point-to-point motion control of the slave-microrobots results in maximum position error of 8 µm in the steady-state. Furthermore, we demonstrate experimentally that interaction forces of tens of micro Newtons, between the slave-microrobot and non-magnetic microbeads, can be estimated using DOBs and scaled-up to the sensory range of the operator.

Keywords

Motion controlParamagnetismMagnetic fieldHaptic technologyRobotMicroparticleComputer scienceControl systemPosition (finance)Point (geometry)

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