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dc.contributor.authorZhao, Tianming
dc.date.accessioned2023-08-10T04:42:12Z
dc.date.available2023-08-10T04:42:12Z
dc.date.issued2023en
dc.identifier.urihttps://hdl.handle.net/2123/31552
dc.description.abstractOnline scheduling is the process of allocating resources to tasks to achieve objectives with uncertain information about future conditions or task characteristics. This thesis presents a new online scheduling framework named online scheduling with predictions. The framework uses predictions about unknowns to manage uncertainty in decision-making. It considers that the predictions may be imperfect and include errors, surpassing the traditional assumptions of either complete information in online clairvoyant scheduling or zero information in online non-clairvoyant scheduling. The goal is to create algorithms with predictions that perform better with quality predictions while having bounded performance with poor predictions. The framework includes metrics such as consistency, robustness, and smoothness to evaluate algorithm performance. We prove the fundamental theorems that give tight lower bounds for these metrics. We apply the framework to central scheduling problems and cyber-physical system applications, including minimizing makespan in uniform machine scheduling with job size predictions, minimizing mean response time in single and parallel identical machine scheduling with job size predictions, and maximizing energy output in pulsed power load scheduling with normal load predictions. Analysis and simulations show that this framework outperforms state-of-the-art methods by leveraging predictions.en
dc.rightsCopyright All Rights Reserveden
dc.subjectschedulingen
dc.subjectonline schedulingen
dc.subjectscheduling with predictionsen
dc.subjectonline scheduling with predictionsen
dc.subjectalgorithms with predictionsen
dc.subjectlearning-augmented algorithmsen
dc.titleOnline Scheduling with Predictionsen
dc.typeThesis
dc.type.thesisDoctor of Philosophyen
dc.rights.otherThe author retains copyright of this thesis. It may only be used for the purposes of research and study. It must not be used for any other purposes and may not be transmitted or shared with others without prior permission.en
usyd.facultySeS faculties schools::Faculty of Engineeringen
usyd.departmentSchool of Computer Scienceen
usyd.degreeDoctor of Philosophy Ph.D.en
usyd.awardinginstThe University of Sydneyen
usyd.advisorZomaya, Alberten


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