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Energy Efficiency Comparison of Asynchronous and Synchronous Circuits Operating in the Sub-Threshold Regime

机译:子阈值制度中异步和同步电路的能效比较

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Digital circuits operating in the sub-threshold regime are able to perform minimum energy operation at a given delay. In the sub-threshold regime circuit delay, hence the leakage energy consumption depends on the supply voltage exponentially. By reducing the idle time of the circuit both the supply voltage that realizes minimum energy operation and the energy consumption can be reduced. This paper presents an in-depth comparison of synchronous and asynchronous techniques in the sub-threshold operating regime for their energy efficiency. First, transistor level accurate high level sub-threshold energy consumption model is developed for both techniques. Afterwards, using the model, energy consumption reduction due to the asynchronous operation is investigated analytically. Different architectural improvements such as pipelining and parallelism are considered. The model has also been applied to the benchmark circuits for comparing real world energy consumption values. From our analysis and simulations we have found out that asynchronous operation in the sub-threshold regime significantly lowers the supply voltage value that realizes the minimum energy operation and operating the digital circuits at a lower supply voltage value result in lower energy operation. Asynchronous operation resulted in energy consumption savings of up to 51% on the ISCAS85 benchmark circuits synthesized in a digital CMOS 0.18 μm process.
机译:在子阈值方案中操作的数字电路能够在给定延迟处执行最小能量操作。在亚阈值制度电路延迟中,因此泄漏能耗取决于指数上的电源电压。通过减小电路的空闲时间,都可以降低实现最小能量操作和能量消耗的电源电压。本文介绍了子阈值操作方案中同步和异步技术的深入比较,以实现其能效。首先,为两种技术开发了晶体管电平精确的高水平子阈值能量消耗模型。之后,使用该模型,分析地研究了由于异步操作引起的能量消耗。考虑不同的建筑改进,如流水线和并行性。该模型还应用于基准电路,以比较现实世界能源消耗值。根据我们的分析和仿真,我们发现子阈值方案中的异步操作显着降低了实现最小能量运行和在较低电源电压值下操作数字电路的电源电压值,导致较低的能量操作。异步操作导致在数字CMOS0.18μm工艺中合成的ISCAS85基准电路上节省的能耗高达51%。

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