Voltage scheduling under unpredictabilities: a risk management paradigm [logic design]

A. Davoodi, Ankur Srivastava
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引用次数: 7

Abstract

This paper addresses the problem of voltage scheduling in unpredictable situations. The voltage scheduling problem assigns voltages to operations such that the power is minimized under a clock cycle constraint. In the presence of unpredictabilities, meeting the clock constraint cannot be guaranteed. This paper proposes a novel risk management based technique to solve this problem. The risk management paradigm assigns a quantified value to the amount of risk the designer is willing to take on the clock cycle constraint. The algorithm then assigns voltages in order to meet the expected value of clock cycle constraint while keeping the maximum delay within the specified 'risk' and minimizing the power.
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不可预测性下的电压调度:一种风险管理范式[逻辑设计]
本文研究了不可预测情况下的电压调度问题。电压调度问题将电压分配给操作,使功率在时钟周期约束下最小化。在存在不可预测性的情况下,不能保证满足时钟约束。本文提出了一种新的基于风险管理的技术来解决这一问题。风险管理范例为设计师在时钟周期约束下愿意承担的风险量分配了一个量化的值。然后,该算法分配电压,以满足时钟周期约束的期望值,同时保持最大延迟在指定的“风险”范围内,并使功率最小。
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Voltage scheduling under unpredictabilities: a risk management paradigm [logic design] Uncertainty-based scheduling: energy-efficient ordering for tasks with variable execution time [processor scheduling] Level conversion for dual-supply systems [low power logic IC design] A selective filter-bank TLB system [embedded processor MMU for low power] A semi-custom voltage-island technique and its application to high-speed serial links [CMOS active power reduction]
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