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A scalable task duplication based algorithm for improving the schedulability of real-time heterogeneous multiprocessor systems

机译:一种基于可扩展任务复制的算法,用于改善实时异构多处理器系统的可调度性

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In this paper, we propose an O(v/sup 2/) scalable duplication based algorithm (RT-SDA) for scheduling precedence constrained real-time tasks on heterogeneous multiprocessors. This models a network of workstations, with processors of varying computing power. The algorithm takes the heterogeneities of both computation and communication of the multiprocessor system into account. RT-SDA employs selective task duplication to reduce the start time of the real-time tasks in the job, thereby increasing the guarantee ratio of the real-time application. Moreover, our scheme is scalable in that the application can be scheduled even if the available number of processors is less than the required number of processors. Compared to the existing scheduling algorithms in the literature, RT-SDA offers better schedulability in terms of a higher guarantee ratio.
机译:在本文中,我们提出了一种O(v / sup 2 /)可伸缩基于重复的算法(RT-SDA),用于在异构多处理器上调度优先级受限的实时任务。这为工作站网络建模,具有不同计算能力的处理器。该算法考虑了多处理器系统的计算和通信的异构性。 RT-SDA采用选择性任务复制来减少作业中实时任务的启动时间,从而提高了实时应用程序的保证率。此外,我们的方案具有可伸缩性,因为即使可用的处理器数量少于所需的处理器数量,也可以对应用程序进行调度。与文献中的现有调度算法相比,RT-SDA就更高的保证率而言提供了更好的可调度性。

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