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t_k-SA: Accelerated Simulated Annealing Algorithm for Application Mapping on Networks-on-Chip

机译:t_k-SA:片上网络上应用映射的加速模拟退火算法

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Simulated Annealing (SA) algorithm is a promising method for solving combinatorial optimization problems. The only limitation of applying the SA algorithm to application mapping problem on many-core networks-on-chip (NoCs) is its low speed. To alleviate this limitation, an accelerated SA algorithm called tk-SA algorithm is proposed in this work. The t_k-SA algorithm starts the annealing process from a lower initial temperature t_k with an optimized initial mapping solution. Based on the analysis of the typical behavior of the general SA algorithm, an efficient method is proposed for determining the temperature t_k. Quantitative evaluations verify that the method is capable of obtaining an appropriate t_k such that the t_k-SA algorithm can reproduce the behavior of the full-range SA from temperature t_k. Experimental results show that compared with a parameter-optimized SA algorithm, the proposed t_k-SA algorithm achieves an average speedup of 1.55 without loss of solution quality.
机译:模拟退火(SA)算法是解决组合优化问题的一种有前途的方法。将SA算法应用于多核片上网络(NoC)上的应用程序映射问题的唯一局限性在于它的速度很慢。为了减轻这种局限性,在这项工作中提出了一种加速的SA算法,称为tk-SA算法。 t_k-SA算法使用优化的初始映射解决方案从较低的初始温度t_k开始退火过程。在分析一般SA算法典型行为的基础上,提出了一种确定温度t_k的有效方法。定量评估证明,该方法能够获得合适的t_k,从而t_k-SA算法可以从温度t_k再现全范围SA的行为。实验结果表明,与参数优化的SA算法相比,所提出的t_k-SA算法在不降低求解质量的情况下,平均速度达到1.55。

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