Utility-Aware Scheduling of Stochastic Real-Time Systems
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OF THE THESIS Utility-Aware Scheduling of Stochastic Real-Time Systems by Terry Tidwell Doctor of Philosophy in Computer Science Washington University in St. Louis, 2011 Research Advisor: Christopher Gill Time utility functions offer a reasonably general way to describe the complex timing constraints of real-time and cyber-physical systems. However, utility-aware scheduling policy design is an open research problem. In particular, scheduling policies that optimize expected utility accrual are needed for real-time and cyber-physical domains. This dissertation addresses the problem of utility-aware scheduling for systems with periodic real-time task sets and stochastic non-preemptive execution intervals. We model these systems as Markov Decision Processes. This model provides an evaluation framework by which different scheduling policies can be compared. By solving the Markov Decision Process we can derive value-optimal scheduling policies for moderate sized problems. However, the time and memory complexity of computing and storing value-optimal scheduling policies also necessitates the exploration of other more scalable solutions. We consider heuristic schedulers, including a generalization we have developed for the
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تاریخ انتشار 2011