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Effective Real-Time Scheduling Optimization for Multi-Functional Mixed-Criticality Systems

机译:多功能混合关键系统的有效实时调度优化

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The heterogeneous distributed embedded systems integrated of multiple functions with different criticality levels are multi-functional mixed-criticality systems (MMCSs). The state-of-the-art work has studied the real-time scheduling in MMCS; however, it is not well designed in system switching mechanism and operation which may lead to missing the deadlines of high-criticality functions and redundant operation. In this study, we improve and optimize the problem by developing an algorithm called rearrangement-based scheduling for MMCS (RSM). The RSM algorithm optimizes the following two main aspects. The first aspect is optimizing system-criticality switching mechanisms, including system criticality changed up and down. The second aspect is the effective operation in system-criticality switching to reduce redundant operation. Experiments are performed, and results show that the RSM algorithm can achieve lower overall makespan and deadline miss ratios (DMRs) than the existing algorithms.
机译:集成具有不同临界水平的多个功能的异构分布式嵌入式系统是多功能混合关键性系统(MMCS)。最先进的工作已经研究了MMC的实时调度;但是,它在系统切换机制和操作中设计不充分设计,这可能导致缺少高临界功能和冗余操作的截止日期。在这项研究中,我们通过开发用于MMCS(RSM)的重新安排的调度的算法来改进和优化问题。 RSM算法优化以下两个主要方面。第一方面是优化系统关键性切换机制,包括系统临界性改变上下。第二方面是系统关键性切换中的有效操作,以减少冗余操作。进行实验,结果表明,RSM算法可以实现比现有算法更低的整体Mapspan和截止日期小标(DMR)。

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