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On-Chip Communication Energy Reduction Through Reliability Aware Adaptive Voltage Swing Scaling

机译:通过可靠性感知的自适应电压摆幅缩放降低片上通信能量

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摘要

In a multi/many-core system, the network-on-chip (NoC)-based communication backbone is responsible for a relevant fraction of the overall energy budget. Reducing the voltage swing for signaling in crossbars and links results in significant energy saving. Unfortunately, as voltage swing reduces, the bit error rate increases, that in turn compromises the communication reliability. Starting from the assumption that not all the communications need same level of reliability, in this paper we propose techniques and architectures for run-time tuning of the voltage swing of the crossbars and interrouter links. The proposed technique is compared with the state of the art in link energy reduction through data encoding under both synthetic and real traffic scenarios. We found that the proposed techniques allow to significantly reduce the energy consumption of the NoC fabric without degrading the performance metrics. Energy savings ranging from 20% to 43% have been observed without any relevant impact on the performance metrics.
机译:在多核/多核系统中,基于片上网络(NoC)的通信主干网负责总体能源预算的相关部分。降低交叉开关和链路中信号发送的电压摆幅可显着节省能源。不幸的是,随着电压摆幅的减小,误码率增加,进而损害了通信可靠性。从并非所有通信都需要相同级别的可靠性的假设出发,在本文中,我们提出了用于对交叉开关和路由器间链路的电压摆幅进行运行时调整的技术和体系结构。在合成和实际流量情况下,通过数据编码将提议的技术与现有技术进行链路能耗的降低进行了比较。我们发现,所提出的技术可以在不降低性能指标的情况下显着降低NoC织物的能耗。已观察到20%到43%的节能量,而对性能指标没有任何相关影响。

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