IEEE J Biomed Health Inform. 2016 Jan;20(1):222-30. doi: 10.1109/JBHI.2014.2387867. Epub 2015 Jan 6.
The development of telemonitoring via wireless body area networks (WBANs) is an evolving direction in personalized medicine and home-based mobile health. A WBAN consists of small, intelligent medical sensors which collect physiological parameters such as electrocardiogram, electroencephalography, and blood pressure. The recorded physiological signals are sent to a coordinator via wireless technologies, and are then transmitted to a healthcare monitoring center. One of the most widely used wireless technologies in WBANs is ZigBee because it is targeted at applications that require a low data rate and long battery life. However, ZigBee-based WBANs face severe interference problems in the presence of WiFi networks. This problem is caused by the fact that most ZigBee channels overlap with WiFi channels, severely affecting the ability of healthcare monitoring systems to guarantee reliable delivery of physiological signals. To solve this problem, we have developed an algorithm that controls the load in WiFi networks to guarantee the delay requirement for physiological signals, especially for emergency messages, in environments with coexistence of ZigBee-based WBAN and WiFi. Since WiFi applications generate traffic with different delay requirements, we focus only on WiFi traffic that does not have stringent timing requirements. In this paper, therefore, we propose an adaptive load control algorithm for ZigBee-based WBAN/WiFi coexistence environments, with the aim of guaranteeing that the delay experienced by ZigBee sensors does not exceed a maximally tolerable period of time. Simulation results show that our proposed algorithm guarantees the delay performance of ZigBee-based WBANs by mitigating the effects of WiFi interference in various scenarios.
基于无线体域网(WBAN)的远程监测技术是个性化医疗和家庭移动医疗的一个发展方向。WBAN 由小型智能医疗传感器组成,这些传感器可以收集心电图、脑电图和血压等生理参数。记录的生理信号通过无线技术发送到协调器,然后传输到医疗监测中心。在 WBAN 中,最广泛使用的无线技术之一是 ZigBee,因为它针对需要低数据速率和长电池寿命的应用。然而,基于 ZigBee 的 WBAN 在存在 WiFi 网络的情况下会遇到严重的干扰问题。这个问题是由于大多数 ZigBee 信道与 WiFi 信道重叠,严重影响医疗监测系统保证生理信号可靠传输的能力。为了解决这个问题,我们开发了一种算法,可以控制 WiFi 网络中的负载,以保证在 ZigBee 为基础的 WBAN 和 WiFi 共存环境中,生理信号的延迟要求,特别是紧急消息的延迟要求。由于 WiFi 应用程序生成的流量具有不同的延迟要求,我们只关注没有严格时间要求的 WiFi 流量。因此,在本文中,我们提出了一种适用于基于 ZigBee 的 WBAN/WiFi 共存环境的自适应负载控制算法,旨在保证 ZigBee 传感器的延迟不超过最大可容忍时间段。仿真结果表明,我们提出的算法通过减轻各种场景中 WiFi 干扰的影响,保证了基于 ZigBee 的 WBAN 的延迟性能。