Energy-efficient architecture for wearable sensor networks

Tifenn Rault, A. Bouabdallah, Y. Challal, Frédéric Marin
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引用次数: 6

Abstract

Human activity recognition from on-body sensor networks is a challenging task for many healthcare applications because it offers continuous monitoring capability. However, these systems still face a major energy issue that prevent their wide adoption. Indeed, in healthcare applications, continuous sampling and communication tasks quickly deplete sensors' battery reserves, and frequent battery replacement are not convenient. Therefore, there is a need to develop energy-efficient solutions for long-term monitoring applications in order to foster the acceptance of these technologies by the patients. In this paper, we present a new energy-efficient architecture for health monitoring where sensors send the sensed data mainly via the user mobile phone, but they have the possibility to send data to access points when they are available in the user environment. The objective of this strategy is to relieve a unique base station from receiving all the data, and it enables sensor nodes to select the best communication technology in terms of energy consumption. Contrary to existing approaches, our solution allows to optimize the lifetime of both the sensor and the base station. The simulation results show that the proposed approach effectively improves the energy efficiency of the system compared to traditional architectures where wearable sensors can only communicate with the user mobile phone.
可穿戴传感器网络的节能架构
对于许多医疗保健应用来说,来自人体传感器网络的人体活动识别是一项具有挑战性的任务,因为它提供了连续监测功能。然而,这些系统仍然面临着一个主要的能源问题,阻碍了它们的广泛采用。事实上,在医疗保健应用中,连续的采样和通信任务会迅速耗尽传感器的电池储备,而且频繁更换电池也不方便。因此,有必要为长期监测应用开发节能解决方案,以促进患者对这些技术的接受。在本文中,我们提出了一种新的健康监测节能架构,其中传感器主要通过用户的移动电话发送感测数据,但当它们在用户环境中可用时,它们有可能将数据发送到接入点。该策略的目的是使一个独特的基站免于接收所有数据,并使传感器节点能够在能耗方面选择最佳通信技术。与现有方法相反,我们的解决方案可以优化传感器和基站的使用寿命。仿真结果表明,与传统的可穿戴传感器只能与用户手机通信的架构相比,该方法有效地提高了系统的能源效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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