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Optimization of Time-Partitions for Mixed-Criticality Real-Time Distributed Embedded Systems

机译:混合关键度实时分布式嵌入式系统的时间分区优化

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In this paper we are interested in mixed-criticality embedded real-time applications mapped on distributed heterogeneous architectures. The architecture provides both spatial and temporal partitioning, thus enforcing enough separation for the critical applications. With temporal partitioning, each application is allowed to run only within predefined time slots, allocated on each processor. The sequence of time slots for all the applications on a processor are grouped within a Major Frame, which is repeated periodically. We assume that the safety-critical applications (on all criticality levels) are scheduled using static-cyclic scheduling and the non-critical applications are scheduled using fixed-priority preemptive scheduling. We consider that each application runs in a separate partition, and each partition is allocated several time slots on the processors where the application is mapped. We are interested to determine the sequence and size of the time slots within the Major Frame on each processor such that both the safety-critical and non-critical applications are schedulable. We have proposed a Simulated Annealing-based approach to solve this optimization problem. The proposed algorithm has been evaluated using several synthetic and real-life benchmarks.
机译:在本文中,我们对映射到分布式异构体系结构上的混合临界嵌入式实时应用程序感兴趣。该体系结构提供了空间和时间分区,从而为关键应用程序实现了足够的分离。使用时间分区,每个应用程序只能在分配给每个处理器的预定义时隙内运行。处理器上所有应用程序的时隙序列都在“主要帧”中分组,并定期重复。我们假定安全关键型应用程序(在所有关键性级别上)是使用静态循环调度来调度的,而非关键型应用程序是使用固定优先级的抢占式调度来调度的。我们认为每个应用程序都在一个单独的分区中运行,并且每个分区在应用程序所映射的处理器上分配了几个时隙。我们感兴趣的是确定每个处理器上主机帧中时隙的顺序和大小,以便对安全性至关重要的应用程序和非关键性应用程序进行调度。我们提出了一种基于模拟退火的方法来解决此优化问题。所提出的算法已使用几种综合基准和实际基准进行了评估。

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