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Performance of ZigBee Wireless Body Sensor Networks for ECG Signal Transmission under Maximum Payload Size

机译:ZigBee无线体传感器网络在最大有效载荷大小下的ECG信号传输

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摘要

Monitoring biomedical signals using Wireless Body Sensor Networks (WSBN) is a growing need. It can be used to provide health care for patients who are in high risk. The portability, light weight and nonintrusive sensors of WSBN suits the acquisition and transmission of Electrocardiogram (ECG) signals for monitoring and tracking purposes of patients with cardiovascular problems. The ZigBee wireless technology can be used for the transmission of ECG signals because of its sufficient available bandwidth, the ad hoc organization, relative long range coverage and low power consumption. Three different WBSN topologies are possible to connect the end devices (the embedded body sensors), the routers and the coordinators; these are star, tree and mesh. In this work the performances of the network, under full packet length transmissions for the above topologies, are analyzed. This has been done in terms of throughput, end-to-end delay and packet loss. The results shows that for the same coverage area a star configuration has the best performance in terms of throughput, end-to-end delay and packet loss. In fact, in star configuration and packet transmission without acknowledgment we can obtain approximately a TDMA channel performance in terms of throughput. While the mesh network is highly loaded with high end-to-end delays observed in the simulation.
机译:使用无线体传感器网络(WSBN)监测生物医学信号是不断增长的需求。它可用于为高风险的患者提供医疗保健。 WSBN的可移植性,重量轻,非流体传感器适用于心电图(ECG)信号的采集和传输,以监测和跟踪心血管问题患者的目的。 ZigBee无线技术可用于传输ECG信号,因为其具有足够的可用带宽,临时组织,相对的长距离覆盖和低功耗。三种不同的WBSN拓扑可以连接终端设备(嵌入式体传感器),路由器和协调器;这些是明星,树和网格。在这项工作中,分析了网络的性能,下面的上述拓扑的完整分组长度传输。这是在吞吐量,端到端延迟和数据包丢失方面完成的。结果表明,对于相同的覆盖区域,星形配置在吞吐量,端到端延迟和分组丢失方面具有最佳性能。实际上,在没有确认的星形配置和数据包传输中,我们可以在吞吐量方面获得大约TDMA信道性能。虽然网状网络高度加载,但在模拟中观察到的高端延迟。

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  • 作者

    Hazha Yahia; Wrya Monnet;

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  • 年度 2017
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  • 原文格式 PDF
  • 正文语种 eng
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