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Distributed Model Predictive Control for Collision and Obstacle Avoidance of Multiple Quadcopters

dc.contributor.authorDubay, Shaundell
dc.contributor.copyright-releaseNot Applicableen_US
dc.contributor.degreeMaster of Applied Scienceen_US
dc.contributor.departmentDepartment of Mechanical Engineeringen_US
dc.contributor.ethics-approvalNot Applicableen_US
dc.contributor.external-examinerGuy Kemberen_US
dc.contributor.graduate-coordinatorDominic Groulxen_US
dc.contributor.manuscriptsNot Applicableen_US
dc.contributor.thesis-readerRobert Baueren_US
dc.contributor.thesis-supervisorYa-Jun Panen_US
dc.date.accessioned2018-07-31T17:55:48Z
dc.date.available2018-07-31T17:55:48Z
dc.date.defence2018-07-23
dc.date.issued2018-07-31T17:55:48Z
dc.description.abstractAs the cost to manufacture quadcopters decrease, multi-agent applications for civilian tasks, such as large-scale surveying, search and rescue missions and fire fighting, are becoming increasingly realizable. However, a multi-agent system of fast moving quadcopters has a high risk of collisions with neighbouring quadcopters or obstacles. The objective of this work is to develop a control strategy for collision and obstacle avoidance of multiple quadcopters. In this thesis, the problem of distributed model predictive control (MPC) for collision avoidance among a team of multiple quadcopters attempting to reach consensus is investigated. Violations of a predetermined safety radius generates output constraints on the MPC optimization function. In addition, logarithmic barrier functions are implemented as input rate constraints on the control actions. Extensive simulation studies for a team of four quadcopters illustrate promising results of the proposed control strategy and case variations. In addition, distributed MPC parameter effects on the system performance are studied and a successful isolated study for obstacle avoidance of static objects is presented.en_US
dc.identifier.urihttp://hdl.handle.net/10222/74089
dc.language.isoenen_US
dc.subjectModel predictive controlen_US
dc.subjectCollision avoidanceen_US
dc.subjectQuadcopter controlen_US
dc.titleDistributed Model Predictive Control for Collision and Obstacle Avoidance of Multiple Quadcoptersen_US

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