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Meta-scheduling techniques for energy-efficient robust and adaptive time-triggered systems

机译:元调度技术,用于节能鲁棒和自适应时间触发系统

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Many real-time embedded systems need to adapt to run-time events such as faults or changing environmental conditions. In time-triggered systems, which are prevalent in safety-critical applications, adaptivity can be realized by switching between static schedules, which are computed by scenario-based meta-scheduling techniques and tools. These tools exploit metadata and meta-scheduling models and algorithms. An example of an important event type is dynamic slack, which can be used to improve the system's energy efficiency by changing communication and execution plans. Likewise, the reaction to fault events involves the passivation of faulty components and the migration to spare resources. These mechanisms improve the robustness of time-triggered real-time systems and provide high potential for time and energy management. Nowadays, energy saving methods and algorithms are used in a wide-range of applications (e.g., mobiles phone), while their applicability in safety-critical systems is still limited. In this paper, we present meta-scheduling techniques and a meta-scheduler tool (MeS) to generate meta-schedules for time-triggered systems. We also experimentally evaluate the energy efficiency and timing based on slack events and fault events. Finally, results are visualized and validated with a meta-scheduling visualization tool (MeSViz).
机译:许多实时嵌入式系统需要适应运行时事件,例如故障或改变环境条件。在安全关键应用中的时间触发系统中,可以通过在静态计划之间切换来实现适应性,这通过基于场景的元调度技术和工具来计算。这些工具利用元数据和元调度模型和算法。重要事件类型的一个例子是动态松弛,可用于通过改变通信和执行计划来提高系统的能效。同样,对故障事件的反应涉及错误的组件和迁移到备用资源的钝化。这些机制改善了时间触发的实时系统的稳健性,并提供了高潜力的时间和能量管理。如今,节能方法和算法用于广泛的应用(例如,Mobiles Phone),而他们在安全关键系统中的适用性仍然有限。在本文中,我们提供元调度技术和元调度工具(MES)以生成用于时间触发系统的元时间表。我们还通过Slack事件和故障事件进行实验评估能量效率和时序。最后,使用元调度可视化工具(Mesviz)可视化和验证结果。

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