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ISIS: a genetic algorithm based technique for custom on-chip interconnection network synthesis

机译:ISIS:一种基于遗传算法的芯片互联网络合成技术

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On-chip packet switched interconnection networks (or network-on-chip (NoC)) have been proposed as a solution to the communication challenges of system-on-chip (SoC) design in the nanoscale regime. SoC design offers the opportunity for incorporating custom NoC architectures that are more suitable for a particular application, and do not necessarily conform to regular topologies. This paper presents ISIS, a novel genetic algorithm (GA) based technique for custom NoC synthesis that optimizes both the power consumption and area of the design subject 10 the performance constraints, and generates a custom NoC topology and mapping of the communication traces on the architecture. ISIS solves a multi-objective optimization problem by minimizing a cost function expressed as a linear combination of the cost incurred due to power consumption and area. We present a detailed analysis of the quality of the results and the solution times of the proposed technique by extensive experimentation with realistic benchmarks and comparisons with optimal MILP solutions.
机译:已经提出了片上分组交换互连网络(或片内(NOC))作为纳米级制度在片上系统(SOC)设计的通信挑战的解决方案。 SoC设计提供了合并更适合特定应用的定制NOC架构的机会,并且不一定符合常规拓扑。本文介绍了一种新型遗传算法(GA)用于定制NOC合成的技术,可优化设计主题10的性能约束的功耗和面积,并生成架构上通信跟踪的自定义NoC拓扑和映射。 ISIS通过最小化表达为由于功耗和面积产生的成本的线性组合的成本函数来解决多目标优化问题。我们对提出的技术的结果和解决方案的质量进行了详细的分析,通过大量实验与现实的基准以及具有最佳MILP解决方案的比较。

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