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首页> 外文期刊>Very Large Scale Integration (VLSI) Systems, IEEE Transactions on >Hardware Variability-Aware Duty Cycling for Embedded Sensors
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Hardware Variability-Aware Duty Cycling for Embedded Sensors

机译:嵌入式传感器的硬件可变性感知占空比

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Instance and temperature-dependent power variation has a direct impact on quality of sensing for battery-powered long-running sensing applications. We measure and characterize the active and leakage power for an ARM Cortex M3 processor and show that, across a temperature range of 20 $^{circ}{rm C}$–60$^{circ}{rm C}$, there is a 10% variation in active power, and a $14times$ variation in leakage power. We introduce variability-aware duty cycling methods and a duty cycle (DC) abstraction for TinyOS which allows applications to explicitly specify the lifetime and minimum DC requirements for individual tasks, and dynamically adjusts the DC rates so that the overall quality of service is maximized in the presence of power variability. We show that variability-aware duty cycling yields a $3-22times$ improvement in total active time over schedules based on worst case estimations of power, with an average improvement of $6.4times$ across a wide variety of deployment scenarios based on the collected temperature traces. Conversely, datasheet power specifications fail to meet required lifetimes by 7%–15%, with an average 37 days short of the required lifetime of 1 year. Finally, we show that a target localization application using variability-aware DC yields a 50% improvement in quality of results over one based on worst case estimations of power consumption.
机译:实例和温度相关的功率变化直接影响电池供电长时间运行的传感应用的传感质量。我们测量并表征了ARM Cortex M3处理器的有功功率和泄漏功率,并证明了在20°C的温度范围内,温度范围为<公式>。 $ –60 $ ^ {circ} {rm C} $ ,有一个10 %有功功率变化,以及泄漏功率的 $ 14×$ 变化。我们为TinyOS引入了可感知变化的占空比方法和占空比(DC)抽象,它允许应用程序明确指定单个任务的寿命和最低DC要求,并动态调整DC速率,从而最大程度地提高整体服务质量。功率可变性的存在。我们表明,基于最坏情况的估计,在整个计划时间内,可变性意识的占空比可以使计划的总活动时间缩短 $ 3-22times $ 功率,根据收集到的温度跟踪结果,在各种部署方案中平均平均提高了 $ 6.4×$ 。相反,数据表电源规格无法满足7%–15%的要求寿命,平均寿命比1年要求寿命短37天。最后,我们表明,基于功耗的最坏情况估计,使用可变性感知DC的目标定位应用程序的结果质量比一个结果要高50%。

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