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History-Based Dynamic Voltage Scaling with Few Number of Voltage Modes for GALS NoC

机译:GALS NoC的基于历史的动态电压定标,电压模式数量很少

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In this paper, we propose a history-based dynamic voltage scaling (DVS) scheme for a GALS NoC which is suitable for MPSoC architectures. The DVS scheme exploits the link utilization and adjusts the router voltages among few number of voltage modes. The introduced architecture is simulated in 90nm CMOS technology with accurate Spice simulations. Experimental results show that history-based DVS successfully adjusts router voltages to track actual link utilization over time. In comparison to the system in which the voltage is fixed at 1.0v, in a 91% saturated network, the proposed DVS scheme saves dynamic and leakage power about 3.3 and 2.3 times, respectively. In addition, 17% energy-delay saving is achieved in the same traffic load.
机译:在本文中,我们为适用于MPSoC架构的GALS NoC提出了基于历史的动态电压缩放(DVS)方案。 DVS方案利用链路利用率并在少数几种电压模式之间调整路由器电压。引入的体系结构采用90nm CMOS技术进行了仿真,并进行了精确的Spice仿真。实验结果表明,基于历史记录的DVS成功地调整了路由器电压,以跟踪一段时间内的实际链路利用率。与电压固定为1.0v的系统相比,在91%的饱和网络中,提出的DVS方案分别节省了约3.3倍和2.3倍的动态功耗和泄漏功率。此外,在相同的交通负荷下,可节省17%的能源延迟。

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