身体QoS:身体传感器网络的自适应和无线不可知QoS

Gang Zhou, Jian Lu, Chieh-Yih Wan, M. Yarvis, J. Stankovic
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引用次数: 157

摘要

随着无线设备和传感器越来越多地应用于人体,研究人员开始关注无线体域网络。无线身体传感器网络的应用包括医疗保健、娱乐和个人辅助,其中传感器从人及其环境中收集生理和活动数据。在这些身体传感器网络中,服务质量需要在优先数据流上提供可靠的数据通信。本文提出了BodyQoS,这是第一个在仿真身体传感器网络上演示的运行QoS系统。BodyQoS采用非对称架构,大多数处理在资源丰富的聚合器上完成,最大限度地减少了资源有限的传感器节点的负载。在BodyQoS中开发了一个虚拟MAC,使其与无线电无关,允许BodyQoS在不知道底层MAC协议实现细节的情况下调度无线资源。BodyQoS的另一个独特属性是它提供自适应资源调度的能力。当信道的有效带宽由于射频干扰或信道体衰落效应而下降时,BodyQoS自适应调度剩余带宽以满足QoS要求。我们在TinyOS之上的NesC中实现了BodyQoS,并在MicaZ设备上对其性能进行了评估。我们的系统性能研究表明,与传统解决方案相比,BodyQoS在对抗信道损伤方面提供了显着改善的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BodyQoS: Adaptive and Radio-Agnostic QoS for Body Sensor Networks
As wireless devices and sensors are increasingly deployed on people, researchers have begun to focus on wireless body-area networks. Applications of wireless body sensor networks include healthcare, entertainment, and personal assistance, in which sensors collect physiological and activity data from people and their environments. In these body sensor networks, quality of service is needed to provide reliable data communication over prioritized data streams. This paper proposes BodyQoS, the first running QoS system demonstrated on an emulated body sensor network. BodyQoS adopts an asymmetric architecture, in which most processing is done on a resource rich aggregator, minimizing the load on resource limited sensor nodes. A virtual MAC is developed in BodyQoS to make it radio-agnostic, allowing a BodyQoS to schedule wireless resources without knowing the implementation details of the underlying MAC protocols. Another unique property of BodyQoS is its ability to provide adaptive resource scheduling. When the effective bandwidth of the channel degrades due to RF interference or body fading effect, BodyQoS adaptively schedules remaining bandwidth to meet QoS requirements. We have implemented BodyQoS in NesC on top of TinyOS, and evaluated its performance on MicaZ devices. Our system performance study shows that BodyQoS delivers significantly improved performance over conventional solutions in combating channel impairment.
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