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Object impedance control for cooperative manipulation: theory and experimental results

Stephanie Schneider, Robert H. Cannon

Year
2003
Citations
275

Abstract

The authors present the dynamic control module of the Dynamic and Strategic Control of Cooperative Manipulators project at Stanford University's Aerospace Robotics Laboratory. First, the cooperative manipulation problem is analyzed from a systems perspective, and the desirable features of a control system for cooperative manipulation are discussed. Next, a control policy is developed that enforces a controlled impedance not of the individual arm endpoints, but of the manipulated object itself. A parallel implementation for a multiprocessor system is presented. The controller fully compensates for the system dynamics and directly controls the object internal forces. Most importantly, it presents a simple, powerful, intuitive interface to the strategic controller. Experimental results for a dual two-link arm robotic system are presented to verify the controllers performance, for both free-motion slews and environmental contact.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

Keywords

Impedance controlController (irrigation)Object (grammar)Computer sciencePerspective (graphical)RoboticsInterface (matter)Control engineeringControl (management)Dual (grammatical number)

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