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Performance Evaluation of 6LoWPAN Based Networks for Ubiquitous Health Monitoring System

机译:基于6LoWPAN的网络无处不在健康监控系统的性能评估

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Machine-to-Machine (M2M) networks have become very useful in a wide range of applications such as ubiquitous healthcare (u-healthcare) monitoring, air quality monitoring, insect monitoring, etc. Such applications require providing Internet connectivity to wireless sensor networks for the purpose of data collection and gathering. IPv6 over low power wireless personal area network (6LoWPAN) protocol specifications support the Internet-of-Things (IoTs), through an adaptation layer that provides efficient header compression. The 6LoWPAN middleware constitutes a crucial enabling technology for M2M networking. An optimum deployment of a 6LoWPAN-based system requires an accurate evaluation of the 6LoWPAN network's performance. Among various metrics, throughput and Packet Error Rate (PER) are of paramount importance, especially for time-critical and delay sensitive applications. In U-Health System where real-time ECG monitoring requires high throughput with reduced PER, an intolerable level of latency could result into lethal effects on patients. Thus, the performance of Wireless Sensor Network (WSN) used in U-Health should conform strictly to the timeliness requirement of health monitoring applications. In this study, we consider a system architecture where a 6LoWPAN node acts as a proximity body sensor to form a Wireless Body Area Network (WBAN) for a given patient. The objective of the study aims at assessing the scalability range of 6LoWPAN based WBANs and at estimating whether the performance bounds of such networks can serve efficiently u-healthcare applications. We evaluate the network performance by simulating different scenarios using Cooja (a Contiki-Network Simulator). Scenarios of a Constant bit rate (CBR) traffic and a Variable-Bit-Rate traffic are simulated, emulating real life biomedical data (e.g., ECG, temperature, etc.). The CBR-based scenario is conceived to determine the verge of the 6LoWPAN network in acute cases of U-Health system. Through simulation we demonstrate the viability of the performance bounds of the 6LoWPAN-based WBAN for u-healthcare applications.
机译:机器对机器(M2M)网络在广泛的应用程序中变得非常有用,例如无处不在的医疗保健(u-healthcare)监视,空气质量监视,昆虫监视等。此类应用程序需要为无线传感器网络提供Internet连接,以便数据收集和收集的目的。低功耗无线个人局域网(6LoWPAN)协议规范通过可提供有效报头压缩的适配层,支持物联网(IoT)。 6LoWPAN中间件构成了M2M网络的关键启用技术。基于6LoWPAN的系统的最佳部署需要对6LoWPAN网络的性能进行准确评估。在各种指标中,吞吐量和分组错误率(PER)至关重要,特别是对于时间紧迫和对延迟敏感的应用。在U-Health系统中,实时ECG监测要求高通量且PER降低,无法忍受的潜伏时间水平可能导致对患者的致命影响。因此,U-Health中使用的无线传感器网络(WSN)的性能应严格符合健康监控应用程序的及时性要求。在这项研究中,我们考虑一个系统架构,其中6LoWPAN节点充当邻近人体传感器,以形成给定患者的无线人体局域网(WBAN)。该研究的目的旨在评估基于6LoWPAN的WBAN的可扩展性范围,并估计此类网络的性能范围是否可以有效地服务于u-healthcare应用。我们通过使用Cooja(一种Contiki网络模拟器)模拟不同的场景来评估网络性能。模拟恒定比特率(CBR)流量和可变比特率流量的场景,以模拟现实生活中的生物医学数据(例如ECG,温度等)。设想基于CBR的方案来确定在U-Health系统的紧急情况下6LoWPAN网络的边缘。通过仿真,我们证明了基于6LoWPAN的WBAN在u-healthcare应用中性能界限的可行性。

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