MTPA-based Haptic Feedback Controller for Master Manipulator in Minimally Invasive Surgery

Yilun Hong, Hongbin Liu, Wenda Zhao, Jian Chen
2024-12-10

SCID:  54.1/zh77a65v
Haptic feedback is critical for teleoperation in surgical robots, particularly in Natural Orifice Transluminal Endoscopic Surgery (NOTES). This paper introduces a haptic controller designed to enhance force generation efficiency and resolution, surpassing traditional motor control frameworks. We propose a Maximum Torque Per Ampere (MTPA)-based Field-Oriented Control (FoC) strategy for haptic kinesthetic feedback controller, optimizing the performance of a master manipulator's joint with a brushless DC (BLDC) motor under stalled and ultra-slow conditions. This approach enables a master manipulator with three degrees of freedom (DoF) for force feedback. Its effectiveness is validated through simulator and surgical trials, demonstrating improved haptic feedback in surgical applications.
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2024-12-10
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Yilun Hong
Hongbin Liu
Wenda Zhao
Jian Chen
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