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ACME: An Energy-Efficient Approximate Bus Encoding for I2C

机译:ACME:I2C的节能近似总线编码

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In ultra low power systems with many peripherals, off-chip serial interconnects contribute significantly to the total energy budget. Leveraging the error-resilience characteristics of many embedded applications, the approximate computing paradigm has been applied to serial bus encodings to reduce interconnect consumption. However, the power model considered in previous works was purely capacitive. Accordingly, the objective of these approximate encodings was simply to reduce the transition count. While this works well for most bus standards, one notable exception is represented by I2C, whose open-drain physical connection makes the static energy consumed by logic-0 values on the bus extremely relevant. In this work, we propose ACME, the first approximate serial bus encoding targeting specifically I2C connections. With a simple encoding/decoding scheme, ACME concurrently reduces both the static and dynamic energy on the bus by maximizing the number of logic-1 values in codewords, while simultaneously reducing transitions. Using an accurate bus model and realistic capacitance and resistance values selected according to the I2C standard, we show that our encoding outperforms state-of-the-art solutions and reduces the total energy consumption on the bus by 57% on average, with an error smaller than 0.1%.
机译:在具有许多外围设备的超低功率系统中,片外串行互连对总能源预算有显着贡献。利用许多嵌入式应用的纠错特性,近似计算范例已经应用于串行总线编码,以减少互连消耗。但是,以前的作品中考虑的电力模型纯粹是电容性的。因此,这些近似编码的目的只是减少转换计数。虽然这适用于大多数巴士标准,但一个值得注意的例外是由i代表 2 C,其开放物理连接其开放物理连接使得逻辑-0在总线上的值消耗的静态能量非常相关。在这项工作中,我们提出了ACME,专门针对的第一个近似串行总线编码 2 C连接。通过简单的编码/解码方案,ACME通过最大化码字中的逻辑-1值的数量,同时减少转换,同时降低总线上的静态和动态能量。使用精确的总线模型和根据I选择的实际电容和电阻值 2 C标准,我们表明我们的编码优于最先进的解决方案,并平均将总线的总能耗降低57%,误差小于0.1%。

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