Real-time Task Scheduling Using Extended Overloading Technique for Multiprocessor Systems

Wei Sun, Chen Yu, Yuanyuan Zhang, X. Défago, Y. Inoguchi
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引用次数: 15

Abstract

The scheduling of real-time tasks with fault-tolerant requirements has been an important problem in multiprocessor systems. Primary-backup (PB) approach is often used as a fault-tolerant technique to guarantee the deadlines of tasks despite the presence of faults. In this paper we propose a PB-based task scheduling approach, wherein an allocation parameter is used to search the available time slots for a newly arriving task, and the previously scheduled tasks can be rescheduled when there is no available time slot for the newly arriving task. In order to improve the schedulability we extend the existing PB-overloading and the Backup-backup (BB) overloading. Our proposed task scheduling algorithm is compared with some existing scheduling algorithms in the literature through simulation studies. The results have shown that the task rejection ratio of our real-time task scheduling algorithm is lower than the compared algorithms.
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基于扩展过载技术的多处理器系统实时任务调度
具有容错要求的实时任务调度一直是多处理器系统中的一个重要问题。主备份(PB)方法通常用作容错技术,以保证在存在故障的情况下仍能完成任务。本文提出了一种基于pbp的任务调度方法,该方法利用分配参数搜索新到达任务的可用时间段,当新到达的任务没有可用时间段时,可以重新调度先前安排的任务。为了提高可调度性,我们扩展了现有的pb -过载和备份-备份(BB)过载。通过仿真研究,将本文提出的任务调度算法与文献中已有的调度算法进行了比较。结果表明,我们的实时任务调度算法的任务拒绝率低于比较算法。
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