Haar-based interconnect coding for energy effective medium/long range data transport

N. C. Laurenciu, S. Cotofana
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Abstract

In this paper we introduce and evaluate Haar based codec assisted medium and long range data transport structures, e.g., bus segments, Network on Chip interconnects, able to deal with technology scaling related phenomena (e.g., increased susceptibility to proximity coupling noise and transmission delay variability), targeting energy savings at the expense of a reasonably small overhead, i.e., 1 extra wire, a 2-gate encoder, and a 2-gate decoder, for each and every pair of uncoded wires. For practical evaluation we employed a 45nm commercial CMOS technology and different random, uncorrelated workload profiles. For 5mm and 10mm long 8-bit buses (without repeaters), we obtain energy savings of 55% and 34%, and a transmission frequency increase of 35% and 41%, respectively, at the expense of less than 1% area overhead with respect to the reference system (i.e., 8-wire synchronous uncoded bus), which prove energy and delay effectiveness. We further augment our proposal with a Single Error Correction and Double Error Detection (SECDED) scheme particularly adapted to its structure, in order to cope with very deep sub-micron noise (e.g., supply voltage variations, electromagnetic interference) induced transmission errors. When compared to the reference system (not SECDED protected), for 10mm long buses, our Haar tailored SECDED approach consumes 27% less energy at the expense of 2% area overhead.
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基于haar的节能中/远程数据传输互连编码
在本文中,我们介绍并评估了基于Haar的编解码器辅助的中远距离数据传输结构,例如总线段,片上网络互连,能够处理技术缩放相关现象(例如,增加对邻近耦合噪声和传输延迟可变性的敏感性),以节省能源为代价,以合理的小开销为代价,即1个额外的电线,一个2门编码器和一个2门解码器,为每对未编码的电线。为了进行实际评估,我们采用了45纳米商用CMOS技术和不同的随机、不相关的工作负载配置文件。对于5mm和10mm长的8位总线(不带中继器),我们分别获得了55%和34%的节能,传输频率分别提高了35%和41%,而相对于参考系统(即8线同步无编码总线)的面积开销不到1%,这证明了能源和延迟有效性。我们进一步扩大了我们的建议,采用了一种特别适合其结构的单误差校正和双误差检测(SECDED)方案,以应对非常深的亚微米噪声(例如,电源电压变化,电磁干扰)引起的传输误差。与参考系统(非SECDED保护)相比,对于10mm长的母线,我们的Haar定制SECDED方法消耗的能量减少了27%,而面积开销则减少了2%。
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