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Approximate Energy-Efficient Encoding for Serial Interfaces

机译:串行接口的近似节能编码

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Serial buses are ubiquitous interconnections in embedded computing systems that are used to interface processing elements with peripherals, such as sensors, actuators, and I/O controllers. Despite their limited wiring, as off-chip connections they can account for a significant amount of the total power consumption of a system-on-chip device. Encoding the information sent on these buses is the most intuitive and affordable way to reduce their power contribution; moreover, the encoding can be made even more effective by exploiting the fact that many embedded applications can tolerate intermediate approximations without a significant impact on the final quality of results, thus trading off accuracy for power consumption. We propose a simple yet very effective approximate encoding for reducing dynamic energy in serial buses. Our approach uses differential encoding as a baseline scheme and extends it with bounded approximations to overcome the intrinsic limitations of differential encoding for data with low temporal correlation. We show that the proposed scheme, in addition to yielding extremely compact codecs, is superior to all state-of-the-art approximate serial encodings over a wide set of traces representing data received or sent from/to sensor or actuators.
机译:串行总线是嵌入式计算系统中的无处不在的互连,用于接口具有外围设备的处理元件,例如传感器,执行器和I / O控制器。尽管接线有限,但作为片外连接,它们可以考虑有关片上设备的大量功耗。编码在这些公共汽车上发送的信息是降低其功率贡献的最直观和价格实惠的方法;此外,通过利用许多嵌入式应用可以容忍中间近似而没有对最终结果的显着影响,可以使编码更有效,因此交易功耗的准确性。我们提出了一种简单而非常有效的近似编码,用于减少串行总线中的动态能量。我们的方法使用差分编码作为基线方案,并将其扩展为界限近似,以克服具有低时间相关性的数据的差分编码的内在限制。我们表明该方案除了产生极其紧凑的编解码器之外,还优于所有最先进的序列编码,所述迹线呈现出从/到传感器或执行器发送的数据或发送的数据。

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