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Energy-Aware Resource Allocation in Multi-mode Automotive Applications with Hard Real-Time Constraints

机译:具有严格实时约束的多模式汽车应用中的能源感知资源分配

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This paper presents an energy aware resource allocation approach that benefits from modal nature of hard real-time systems under consideration. The modal nature of considered applications made it possible to decrease the number of active cores consuming high power in certain modes or to switch into core states with lower power consumption, which lead to considerable energy savings while still not violating any of timing constraints. For the considered automotive use case, the number of required cores has been decreased by up to 75% in a particular mode and relatively low amount of data is to be migrated during the mode change. The trade-off between the amount of data to be migrated and energy dissipation in the subsequent state is also analysed.
机译:本文提出了一种节能的资源分配方法,该方法得益于正在考虑的硬实时系统的模态性质。考虑到应用的模态性质,可以减少在某些模式下消耗高功率的活动内核的数量,或者以较低的功耗切换到内核状态,这可以节省大量能源,同时仍不违反任何时序约束。对于考虑的汽车用例,在特定模式下,所需内核的数量最多减少了75%,并且在模式更改期间将迁移相对较少的数据量。还分析了要迁移的数据量与后续状态下的能耗之间的权衡。

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