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首页> 外文期刊>ACM Transactions on Design Automation of Electronic Systems >Energy-Efficient Datapath Scheduling Using Multiple Voltages and Dynamic Clocking
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Energy-Efficient Datapath Scheduling Using Multiple Voltages and Dynamic Clocking

机译:使用多个电压和动态时钟的节能型数据路径调度

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Recently, dynamic frequency scaling has been explored at the CPU and system levels for power optimization. Low-power datapath scheduling using multiple supply voltages has been well researched. In this work, we develop new datapath scheduling algorithms that use multiple supply voltages and dynamic frequency clocking in a coordinated manner in order to reduce the energy consumption of datapath circuits. In dynamic frequency clocking, the functional units can be operated at different frequencies depending on the computations occurring within the datapath during a given clock cycle. The strategy is to schedule high-energy units, such as multipliers at lower frequencies, so that they can be operated at lower voltages to reduce energy consumption and the low-energy units, such as adders at higher frequencies, to compensate for speed. The proposed time- and resource-constrained algorithms have been applied to various high-level synthesis benchmark circuits under different time and/resource constraints. The experimental results show significant reduction in energy for both the algorithms.
机译:最近,已经在CPU和系统级别探索动态频率缩放以优化功率。使用多种电源电压的低功率数据路径调度已经得到了充分的研究。在这项工作中,我们开发了新的数据路径调度算法,该算法以协调的方式使用多个电源电压和动态频率时钟,以减少数据路径电路的能耗。在动态频率计时中,可以根据给定时钟周期内数据路径中发生的计算,以不同的频率操作功能单元。该策略是调度高能量单元(例如,较低频率的乘法器),以便它们可以在较低电压下工作以降低能耗,而低能量单元(例如,较高频率的加法器)可以补偿速度。所提出的时间和资源受限算法已在不同的时间和/或资源约束下应用于各种高级综合基准电路。实验结果表明,两种算法的能量均大大降低。

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