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Thermal-aware power-efficient deadline based task allocation in multi-core processor

机译:多核处理器中基于热感知功率效率截止期限的任务分配

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This paper address the power-efficient task allocation problem in a heterogeneous multi-core processor for thermally challenged tasks with real-time constraints. A thermally challenged task is one which, if executed on a core at the maximum possible speed, resulting the core temperature exceeds a given safe temperature limit. Our problem formulation is based on the well-praised thermal models HotSpot-4, leakage power and delay models with DVFS (dynamic voltage and frequency scaling). The solution to this problem is not so straight forward due to the fact that there is a nonlinear-circular dependency between the overall power dissipation and the temperature. It becomes further complicated with the consideration of a crucial parameter, task's deadline. We have solved this problem with a novel idea of deadline based task allocation scheme (DBTAS) that takes care of the permissible thermal dissipation, power consumption and speed of the processor. We have included suitable numerical test cases to demonstrate the efficacy of the proposed scheme for task allocation. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文针对具有实时约束的热挑战任务,解决了异构多核处理器中的节能任务分配问题。热挑战任务是这样一种任务,如果以最大可能的速度在铁芯上执行该任务,则导致铁芯温度超过给定的安全温度极限。我们的问题公式基于广受赞誉的热模型HotSpot-4,泄漏功率和带有DVFS(动态电压和频率缩放)的延迟模型。由于存在一个总功耗和温度之间存在非线性循环关系的事实,因此该问题的解决方案并非那么简单。考虑关键参数(任务的期限)会变得更加复杂。我们通过基于任务期限的任务分配方案(DBTAS)的新颖思想解决了这个问题,该方案考虑了允许的散热,功耗和处理器速度。我们已经包括了合适的数值测试案例,以证明所提出的计划用于任务分配的有效性。 (C)2016 Elsevier B.V.保留所有权利。

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