Palletization method for oversized part stacking with an industrial robotic arm

dc.contributor.authorDriedger, Matthew
dc.contributor.examiningcommitteePeng, Qingjin (Mechanical Engineering) Thulasiram, Ruppa (Computer Science)en_US
dc.contributor.supervisorBalakrishnan, Subramaniam (Mechanical Engineering)en_US
dc.date.accessioned2018-04-12T15:28:01Z
dc.date.available2018-04-12T15:28:01Z
dc.date.issued2017
dc.date.submitted2018-04-03T23:02:43Zen
dc.degree.disciplineMechanical Engineeringen_US
dc.degree.levelMaster of Science (M.Sc.)en_US
dc.description.abstractThis work explores a novel palletization strategy for an industrial robot that allows parts to overhang from the edges of a bin while maintaining stack stability. This allows the palletizing of a larger number of parts than non-overhang methods and for palletizing parts larger than the pallets themselves. An increased emphasis was placed on stack stability and new methods of stability analysis were developed. The resulting methodology was applied to the palletization of cut-lumber parts for a wooden truss manufacturer. The method was simulated in Unity and tested on a robotic cell at the University of Manitoba Automation Laboratory. Based on these tests, the method was found to be capable of volume utilization efficiencies of over 105% +/- 5% when using traditional metrics, or 71%+/-3% when using in-bin volume utilization: a new metric developed in this thesis. The results of this work, as reported in this thesis, are very promising.en_US
dc.description.noteMay 2018en_US
dc.identifier.urihttp://hdl.handle.net/1993/32962
dc.language.isoengen_US
dc.rightsopen accessen_US
dc.subjectPalletizingen_US
dc.subjectBin Packingen_US
dc.subjectAutomationen_US
dc.subjectRoboticsen_US
dc.titlePalletization method for oversized part stacking with an industrial robotic armen_US
dc.typemaster thesisen_US
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