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Power Consumption Measurement and Scenario Based Energy Model in Wearable Computing Applications

机译:可穿戴计算应用中的功耗测量和基于场景的能源模型

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摘要

The power is still today an issue in wearable computing applications. The aim of the present paper is to raise awareness of the power consumption of wearable computing devices in specific scenarios to be able in the future to design energy efficient wireless sensors for context recognition in wearable computing applications. The approach is based on a hardware study. The objective of this paper is to analyze and compare the total power consumption of three representative wearable computing devices in realistic scenarios such as Display, Speaker, Camera and microphone, Transfer by Wi-Fi, Monitoring outdoor physical activity and Pedometer. A scenario based energy model is also developed. The Samsung Galaxy Nexus I9250 smartphone, the Vuzix M100 Smart Glasses and the SimValley Smartwatch AW-420.RX are the three devices representative of their form factors. The power consumption is measured using PowerTutor, an android energy profiler application with logging option and using unknown parameters so it is adjusted with the USB meter. The result shows that the screen size is the main parameter influencing the power consumption. The power consumption for an identical scenario varies depending on the wearable devices meaning that others components, parameters or processes might impact on the power consumption and further study is needed to explain these variations. This paper also shows that different inputs (touchscreen is more efficient than buttons controls) and outputs (speaker sensor is more efficient than display sensor) impact the energy consumption in different way. This paper gives recommendations to reduce the energy consumption in healthcare wearable computing application using the energy model.
机译:如今,电源仍然是可穿戴计算应用程序中的一个问题。本文的目的是提高人们对特定情况下可穿戴计算设备功耗的认识,以便将来能够设计可节能无线传感器以用于可穿戴计算应用中的上下文识别。该方法基于硬件研究。本文的目的是在现实情况下分析和比较三种代表性可穿戴计算设备的总功耗,例如显示器,扬声器,摄像头和麦克风,通过Wi-Fi进行传输,监视户外体育活动和计步器。还开发了基于情景的能源模型。三星Galaxy Nexus I9250智能手机,Vuzix M100智能眼镜和SimValley Smartwatch AW-420.RX是代表其外形尺寸的三款设备。功耗是使用PowerTutor(带有日志记录选项的android能源剖析器应用程序)和未知参数测量的,因此可以通过USB电表进行调整。结果表明,屏幕尺寸是影响功耗的主要参数。同一情况下的功耗取决于可穿戴设备,这意味着其他组件,参数或过程可能会影响功耗,因此需要进一步研究以解释这些差异。本文还表明,不同的输入(触摸屏比按钮控件更有效)和输出(扬声器传感器比显示传感器更高效)以不同的方式影响能耗。本文提出了使用能量模型减少医疗保健可穿戴计算应用中的能耗的建议。

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    Petit Dorine;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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