A thermal stress-aware algorithm for power and temperature management of MPSoCs

M. Kamal, Arman Iranfar, A. Afzali-Kusha, M. Pedram
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引用次数: 9

Abstract

In this work, we propose a thermal stress-aware algorithm for the management of the power and temperature in MPSoCs. The algorithm, which uses a heuristic approach, controls the power consumption, maximum temperature, thermal cycles, and temporal/spatial thermal gradients of MPSoCs. At the top level, the decision on turning the cores on and off is made based on the constraints of peak temperature, maximum spatial thermal gradient, and power consumption. At the next tier, the optimal frequencies (and supply voltages) of the ON cores, formulated in a convex optimization problem, are determined again based on satisfying the constraints of the maximum total power consumption, peak temperature, thermal cycles, and also temporal thermal gradient. The technique may be applied to both the heterogeneous and homogenous MPSoCs. The efficacy of the proposed approach in reducing the thermal cycles as well as temporal thermal gradient is evaluated by comparing its results with a similar previous power and temperature management approach. The evaluation which is performed on 8-core processors under Splash2 benchmarks, demonstrates the ability of the suggested technique in limiting a considerable reduction in the thermal stress parameters.
一种用于mpsoc电源和温度管理的热应力感知算法
在这项工作中,我们提出了一种热应力感知算法来管理mpsoc中的功率和温度。该算法采用启发式方法,控制mpsoc的功耗、最高温度、热循环和时间/空间热梯度。在顶层,根据峰值温度、最大空间热梯度和功耗的约束来决定是否打开和关闭内核。在下一层,在满足最大总功耗、峰值温度、热循环和时间热梯度的约束的基础上,再次确定ON内核的最佳频率(和电源电压),以凸优化问题的形式表示。该技术可应用于异质和同质mpsoc。通过与先前类似的功率和温度管理方法的结果比较,评估了所提出的方法在减少热循环和时间热梯度方面的有效性。在Splash2基准测试下在8核处理器上进行的评估证明了所建议的技术在限制热应力参数的显著降低方面的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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