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Overhead-Conscious Voltage Selection for Dynamic and Leakage Power Reduction of Time-Constraint Systems

机译:时间约束系统动态和泄漏功率降低的架空电压选择

摘要

Dynamic voltage scaling and adaptive body biasing have been shown to reduce dynamic and leakage power consumption effectively. In this paper, we optimally solve the combined supply voltage and body bias selection problem for multi-processor systems with imposed time constraints, explicitly taking into account the transition overheads implied by changing voltage levels. Both energy and time overheads are considered. We investigate the continuous voltage scaling as well as its discrete counterpart, and we prove NP-hardness in the discrete case. Furthermore, the continuous voltage scaling problem is formulated and solved using nonlinear programming with polynomial time complexity, while for the discrete problem we use mixed integer linear programming. Extensive experiments, conducted on several benchmarks and a real-life example, are used to validate the approaches.
机译:动态电压缩放和自适应主体偏置已被证明可有效降低动态和泄漏功耗。在本文中,我们明确地考虑了变化的电压电平所隐含的过渡开销,从而为带有时间限制的多处理器系统最优地解决了电源电压和主体偏置的组合选择问题。同时考虑了能源和时间开销。我们研究了连续电压定标及其离散对应物,并证明了离散情况下的NP硬度。此外,使用具有多项式时间复杂度的非线性编程来公式化和解决连续电压缩放问题,而对于离散问题,我们使用混合整数线性编程。在几个基准和一个实际示例中进行的广泛实验被用来验证这些方法。

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