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The compatibility analysis of thread migration and DVFS in multi-core processor

机译:多核处理器中线程迁移与DVFS的兼容性分析

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Integrating multiple cores into a processor increases the heat density significantly, which often constrains the maximum performance of such a processor. There have been many techniques using dynamic voltage and frequency scaling (DVFS) and thread migration to manipulate heat dissipation in thermally-constrained multi-core processors. However, most of them were analyzed and applied individually for optimizing the performance of the multi-core processors while their computational cost for the optimization was not studied well. In this paper, we argue that a coherent organization of two techniques can maximize the performance of the multi-core processors with the least performance overheads associated with the thermal management techniques. Furthermore, we also propose an efficient method to optimize the performance of thermal-constrained multi-core processors. According to our experiment, we achieved 5% throughput improvement with negligible computation cost.
机译:将多个内核集成到处理器中会大大提高热量密度,这通常会限制此类处理器的最大性能。已经有许多技术使用动态电压和频率缩放(DVFS)和线程迁移来控制受热约束的多核处理器中的散热。然而,它们中的大多数被分析并单独用于优化多核处理器的性能,而对于优化的计算成本却没有得到很好的研究。在本文中,我们认为两种技术的一致组织可以在使与热管理技术相关的性能开销最小的情况下,最大化多核处理器的性能。此外,我们还提出了一种有效的方法来优化受热约束的多核处理器的性能。根据我们的实验,我们以可忽略的计算成本实现了5%的吞吐量提升。

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