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A design of a controller as a component of a robotic manufacturing system
Authors:Paul S Fussell  PK Wright  David Bourne
Affiliation:Robotics Institute, Carnegie-Mellon University, Pittsburgh, Pennsylvania, USA
Abstract:This paper specifies the functional design of a robot or machine tool controller suitable for inclusion in robotic manufacturing systems. The principle interest is the unmanned manufacturing cells which are being developed as major components of new manufacturing facilities. The functional specifications are motivated by recent experiences with the creation of a prototype cell for an open die forging process. There are two key technical design requirements. The first relates to the robot or machine tool being controlled. The controller must direct the machine actions, and, for unmanned operation, the controller must receive and process sensor information for process modification and for fault tolerance. The second relates to communication with the central cell computer (the host). The operation of an unmanned system requires a robot communication channel between the host and the controller; the controller must also respond to a variety of instructions transmitted from the host. Additional controller design requirements are imposed by economics. The proposed controller can be used today, and can develop in an evolutionary manner to meet the needs of future manufacturing systems. The evolutionary development is made possible by modular design, organized in a hierarchical manner.
Keywords:CAM  Control Equipment  Robots  CNC  Industrial Robots  Robot Controller Design  Manufacturing Cell Communication
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