Phunchongharn Phond, Niyato Dusit, Hossain Ekram, Camorlinga Sergio
Department of Electrical and Computer Engineering, University of Manitoba, Winnipeg, MB R3T 5V6, Canada.
IEEE Trans Inf Technol Biomed. 2010 Sep;14(5):1247-58. doi: 10.1109/TITB.2010.2047507. Epub 2010 Apr 15.
Wireless communications technologies can support efficient healthcare services in medical and patient-care environments. However, using wireless communications in a healthcare environment raises two crucial issues. First, the RF transmission can cause electromagnetic interference (EMI) to biomedical devices, which could critically malfunction. Second, the different types of electronic health (e-Health) applications require different quality of service (QoS). In this paper, we introduce an innovative wireless access scheme, called EMI-aware prioritized wireless access, to address these issues. First, the system architecture for the proposed scheme is introduced. Then, an EMI-aware handshaking protocol is proposed for e-Health applications in a hospital environment. This protocol provides safety to the biomedical devices from harmful interference by adapting transmit power of wireless devices based on the EMI constraints. A prioritized wireless access scheme is proposed for channel access by two different types of applications with different priorities. A Markov chain model is presented to study the queuing behavior of the proposed system. Then, this queuing model is used to optimize the performance of the system given the QoS requirements. Finally, the performance of the proposed wireless access scheme is evaluated through extensive simulations.
无线通信技术能够在医疗和患者护理环境中支持高效的医疗服务。然而,在医疗环境中使用无线通信引发了两个关键问题。首先,射频传输可能会对生物医学设备造成电磁干扰(EMI),这可能导致严重的故障。其次,不同类型的电子健康(e-Health)应用需要不同的服务质量(QoS)。在本文中,我们引入了一种创新的无线接入方案,称为EMI感知优先级无线接入,以解决这些问题。首先,介绍了所提方案的系统架构。然后,针对医院环境中的电子健康应用提出了一种EMI感知握手协议。该协议通过根据EMI约束调整无线设备的发射功率,为生物医学设备提供免受有害干扰的安全保障。针对具有不同优先级的两种不同类型的应用,提出了一种优先级无线接入方案用于信道接入。提出了一个马尔可夫链模型来研究所提系统的排队行为。然后,在给定QoS要求的情况下,使用该排队模型来优化系统性能。最后,通过广泛的仿真评估了所提无线接入方案的性能。