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Mutual-Information-Based Incremental Relaying Communications for Wireless Biomedical Implant Systems

机译:无线生物医学植入系统的基于互信息的增量中继通信

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摘要

Network lifetime maximization of wireless biomedical implant systems is one of the major research challenges of wireless body area networks (WBANs). In this paper, a mutual information (MI)-based incremental relaying communication protocol is presented where several on-body relay nodes and one coordinator are attached to the clothes of a patient. Firstly, a comprehensive analysis of a system model is investigated in terms of channel path loss, energy consumption, and the outage probability from the network perspective. Secondly, only when the MI value becomes smaller than the predetermined threshold is data transmission allowed. The communication path selection can be either from the implanted sensor to the on-body relay then forwards to the coordinator or from the implanted sensor to the coordinator directly, depending on the communication distance. Moreover, mathematical models of quality of service (QoS) metrics are derived along with the related subjective functions. The results show that the MI-based incremental relaying technique achieves better performance in comparison to our previous proposed protocol techniques regarding several selected performance metrics. The outcome of this paper can be applied to intra-body continuous physiological signal monitoring, artificial biofeedback-oriented WBANs, and telemedicine system design.
机译:无线生物医学植入系统的网络寿命最大化是无线人体局域网(WBAN)的主要研究挑战之一。在本文中,提出了一种基于互信息(MI)的增量中继通信协议,其中将几个人体中继节点和一个协调器附加到患者的衣服上。首先,从网络的角度对系统模型进行了全面的分析,包括信道路径损耗,能耗和中断概率。其次,仅当MI值变得小于预定阈值时,才允许数据传输。通信路径的选择可以是从植入传感器到人体继电器,然后转发到协调器,也可以直接从植入传感器到协调器,具体取决于通信距离。此外,还推导了服务质量(QoS)指标的数学模型以及相关的主观功能。结果表明,与我们先前针对几种选定的性能指标提出的协议技术相比,基于MI的增量中继技术实现了更好的性能。本文的结果可应用于体内连续生理信号监测,面向人工生物反馈的WBAN和远程医疗系统设计。

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