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Accurate Power Consumption Evaluation for Peripherals in Ultra Low-Power embedded systems

机译:超低功耗嵌入式系统外设的准确功耗评估

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We propose a methodology to measure, model and simulate power consumption of peripheral devices of a low-power embedded micro-controller, while keeping a reasonable development cost. This methodology is experimented against the low-power MSP-EXP430FR5739 platform that includes nonvolatile RAM for intermittent computing purposes and a handful of peripherals. The experimental measurements enable the characterization of the consumption of the peripherals, while many existing comparable studies do not provide power consumption for peripherals. These measurements are integrated into a simulator that targets low-power peripheral-intensive applications, as are most of IoT embedded programs. The accuracy of the power consumption estimation is within a 5% error on intermittent embedded computing using peripherals.
机译:我们提出了一种方法来测量,模型和模拟低功耗嵌入式微控制器外围设备的功耗,同时保持合理的开发成本。 该方法是针对低功耗MSP-EXP430FR5739平台进行实验,该平台包括用于间歇计算目的的非易失性RAM和少数外围设备。 实验测量能够表征外围设备的消耗,而许多现有的可比性研究不能为外围设备提供功耗。 这些测量集成到一个针对低功耗外围密集型应用程序的模拟器中,就像IoT嵌入式程序一样。 使用外围设备的间歇嵌入式计算的功耗估计的准确性在5%的误差范围内。

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