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Temperature-Aware Task Allocation and Scheduling for Embedded Multiprocessor Systems-on-Chip (MPSoC) Design

机译:嵌入式多处理器片上系统(MPSoC)设计的温度感知任务分配和调度

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Temperature affects not only the performance but also the power, reliability, and cost of the embedded system. This paper proposes a temperature-aware task allocation and scheduling algorithm for MPSoC embedded systems. Thermal-aware heuristics are developed, and a temperature-aware floorplanning tool is used to reduce the peak temperature and achieve a thermally even distribution while meeting real time constraints. The paper investigates both power-aware and thermal-aware approaches to the task allocation and scheduling. The experimental results show that the thermal-aware approach outperforms the power-aware schemes in terms of maximal and average temperature reductions. To the best of our knowledge, this is the first MPSoC task allocation and scheduling algorithm that takes temperature into consideration.
机译:温度不仅会影响嵌入式系统的性能,还会影响其功耗,可靠性和成本。本文提出了一种用于MPSoC嵌入式系统的温度感知任务分配和调度算法。开发了热感知启发法,并使用了温度感知布局规划工具来降低峰值温度并实现热均匀分布,同时满足实时约束。本文研究了用于任务分配和调度的功率感知和热感知方法。实验结果表明,在最大和平均温度降低方面,热感知方法优于功率感知方案。据我们所知,这是第一个考虑温度的MPSoC任务分配和调度算法。

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