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WiCop: Engineering WiFi Temporal White-Spaces for Safe Operations of Wireless Personal Area Networks in Medical Applications

机译:WiCop:在医疗应用中设计WiFi临时空白以确保无线个人局域网的安全运行

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ZigBee and other wireless technologies operating in the (2.4GHz) ISM band are being applied in Wireless Personal Area Networks (WPAN) for many medical applications. However, these low duty cycle, low power, and low data rate medical WPANs suffer from WiFi co-channel interferences. WiFi interference can lead to longer latency and higher packet losses in WPANs, which can be particularly harmful to safety-critical applications with stringent temporal requirements, such as ElectroCardioGraphy (ECG). This paper exploits the Clear Channel Assessment (CCA) mechanism in WiFi devices and proposes a novel policing framework, WiCop, that can effectively control the temporal white-spaces between WiFi transmissions. Such temporal white-spaces can be utilized for delivering low duty cycle WPAN traffic. We have implemented and validated WiCop on SORA, a software-defined radio platform. Experimental results show that with the assistance of the proposed WiCop policing schemes, the packet reception rate of a ZigBee-based WPAN can increase by up to 116% in the presence of a heavy WiFi interferer. A case study on the medical application of WPAN ECG monitoring demonstrates that WiCop can bound ECG signal distortion within 2% even under heavy WiFi interference. An analytical framework is devised to model the CCA behavior of WiFi interferers and the performance of WPANs under WiFi interference with or without WiCop protection. The analytical results are corroborated by experiments.
机译:在(2.4GHz)ISM频段中运行的ZigBee和其他无线技术已在无线个人局域网(WPAN)中应用于许多医疗应用。但是,这些低占空比,低功耗和低数据速率的医疗WPAN遭受WiFi同信道干扰。 WiFi干扰会导致WPAN中更长的等待时间和更高的数据包丢失,这对于具有严格时间要求的安全关键型应用(例如心电图(ECG))尤其有害。本文利用WiFi设备中的清除信道评估(CCA)机制,提出了一种新颖的管制框架WiCop,该框架可以有效控制WiFi传输之间的时间空白。这样的时间空白可以用于传递低占空比WPAN业务。我们已经在软件定义的无线电平台SORA上实施并验证了WiCop。实验结果表明,在提出的WiCop管制方案的帮助下,在存在严重WiFi干扰的情况下,基于ZigBee的WPAN的数据包接收率最多可以提高116%。对WPAN ECG监测医疗应用的案例研究表明,即使在严重的WiFi干扰下,WiCop仍可将ECG信号失真限制在2%之内。设计了一个分析框架来对WiFi干扰者的CCA行为和WiFi干扰下具有或不具有WiCop保护的WPAN的性能进行建模。实验证明了分析结果。

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