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Aging-Aware Task Scheduling for Mesh-Based Network-on-Chips Under Aging Effect

机译:老化影响下基于网格的片上网络的老化感知任务调度

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The aging effect induced by negative bias temperature instability (NBTI) is a universal issue existing in electronic equipments. NBTI aging effect can increase the path delay of network-on-chip (NoC) device, resulting in the decreased frequency of processor core and in turn its performance degradation. Under this circumstance, aging-aware task scheduling becomes a complex and challenging problem in advanced multicore systems. This paper presents an aging-aware scheduling method that incorporates NBTI aging effect into the task scheduling framework for mesh-based NoCs. The proposed method relies on a NBTI aging model to evaluate the degradation of core's operating frequency to establish the task scheduling model under aging effect. Taking into account core performance degradation and the communication overheads among cores, we develop a meta-heuristic scheduling strategy based on particle swarm optimization algorithm to minimize the total execution time of all tasks. Experimental results show that the schedule obtained by the aging-aware algorithm has shorter completion time and higher throughput compared with the nonaging-aware case. On average, the makespan can be reduced by 13.55% and the throughput can be increased by 21.73% for a variety of benchmark applications.
机译:负偏压温度不稳定性(NBTI)引起的老化效应是电子设备中普遍存在的问题。 NBTI老化效应可能会增加片上网络(NoC)设备的路径延迟,从而导致处理器内核频率降低,进而降低其性能。在这种情况下,在高级多核系统中,可感知老化的任务调度成为一个复杂而具有挑战性的问题。本文提出了一种老化感知调度方法,该方法将NBTI老化效应纳入基于网格的NoC的任务调度框架中。该方法基于NBTI老化模型来评估核芯工作频率的下降,以建立老化效应下的任务调度模型。考虑到内核性能下降和内核之间的通信开销,我们开发了一种基于粒子群优化算法的元启发式调度策略,以最大程度地减少所有任务的总执行时间。实验结果表明,与不老化的情况相比,基于老化的算法获得的调度具有较短的完成时间和较高的吞吐量。平均而言,对于各种基准测试应用,可以将制造周期降低13.55%,并将吞吐量提高21.73%。

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