首页> 外文会议>Object/Component/Service-Oriented Real-Time Distributed Computing (ISORC), 2012 IEEE 15th International Symposium on >Experimental Evaluation of Global and Partitioned Semi-Fixed-Priority Scheduling Algorithms on Multicore Systems
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Experimental Evaluation of Global and Partitioned Semi-Fixed-Priority Scheduling Algorithms on Multicore Systems

机译:多核系统全局和分区半固定优先级调度算法的实验评估

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Nowadays multicore systems have been used in real-time applications such as robots. In robots, imprecise tasks such as image processing tasks are required to detect and avoid objects. However, existing real-time operating systems have evaluated multiprocessor real-time scheduling algorithms in Liu and Lay land's model and have not evaluated those in the imprecise computation model. This paper performs experimental evaluations of global and partitioned semi-fixed-priority scheduling algorithms in the extended imprecise computation model on multicore systems. Experimental results show that semi-fixed-priority scheduling has comparable overhead to fixed-priority scheduling. In addition, global semi-fixed-priority scheduling has lower overhead than partitioned semi-fixed-priority scheduling.
机译:如今,多核系统已用于机器人等实时应用中。在机器人中,需要不精确的任务(例如图像处理任务)来检测和避开物体。但是,现有的实时操作系统已经在Liu和Lay land的模型中评估了多处理器实时调度算法,而没有在不精确的计算模型中对其进行评估。本文在多核系统的扩展不精确计算模型中对全局和分区半固定优先级调度算法进行了实验评估。实验结果表明,半固定优先级调度的开销与固定优先级调度相当。此外,全局半固定优先级调度比分区半固定优先级调度具有更低的开销。

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