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Optimisation-based design of a manipulator for harvesting capsicum

Chris Lehnert, Tristán Pérez, Chris McCool

Year
2015
Citations
14
Access
Open access

Abstract

This paper presents a global-optimisation frame-work for the design of a manipulator for harvesting capsicum(peppers) in the field. The framework uses a simulated capsicum scenario with automatically generated robot models based on DH parameters. Each automatically generated robot model is then placed in the simulated capsicum scenario and the ability of the robot model to get to several goals (capsicum with varying orientations and positions) is rated using two criteria:the length of a collision-free path and the dexterity of the end-effector. These criteria form the basis of the objective function used to perform a global optimisation. The paper shows a preliminary analysis and results that demonstrate the potential of this method to choose suitable robot models with varying degrees of freedom.

Keywords

Frame (networking)RobotManipulator (device)Field (mathematics)Path (computing)Robot manipulatorRobot end effectorFunction (biology)Work (physics)Control theory (sociology)

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