首页> 外文会议>Proceedings of the 16th ACM/IEEE International Symposium on Low-Power Electronics and Design >Workload-adaptive process tuning strategy for power-efficient multi-core processors
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Workload-adaptive process tuning strategy for power-efficient multi-core processors

机译:节能多核处理器的工作负载自适应过程调整策略

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As more devices are integrated with technology scaling, reducing the power consumption of both high-performance and low-power processors has become the first-class design constraint. Reducing power consumption while satisfying required performance is critical for increasing the operating time of mobile devices and lowering the operating cost of offices and data centers. Meanwhile, dynamic voltage and frequency scaling (DVFS) and clock-gating (CG) techniques have been widely used for two of the most powerful techniques to reduce the power consumption of such processors. Depending on performance and power demands, a processor runs at various performance and power states to trade power with performance. In this paper, we propose process tuning strategy to minimize the average power consumption of multi-core processors that use the DVFS and CG techniques, while providing the same maximum performance. The proposed optimization method incorporates with workload characteristics of commercial high-performance and low-power multi-core processors. The experimental results show that our optimized 32nm technologies for workstation, mobile, and server multi-core processors minimize the average power by up to 13, 18, and 9%, respectively.
机译:随着越来越多的设备与技术扩展集成在一起,减少高性能和低功耗处理器的功耗已成为一流的设计约束。在满足所需性能的同时降低功耗对于延长移动设备的运行时间以及降低办公室和数据中心的运营成本至关重要。同时,动态电压和频率缩放(DVFS)和时钟门控(CG)技术已被广泛用于降低此类处理器功耗的两项最强大的技术。根据性能和功率需求,处理器以各种性能和功率状态运行,以权衡性能。在本文中,我们提出了过程调整策略,以最小化使用DVFS和CG技术的多核处理器的平均功耗,同时提供相同的最高性能。所提出的优化方法结合了商用高性能和低功耗多核处理器的工作负载特征。实验结果表明,我们针对工作站,移动和服务器多核处理器优化的32纳米技术分别将平均功耗分别降低了多达13%,18%和9%。

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