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首页> 外文期刊>IEEE sensors journal >Performance Optimization of the IEEE 802.15.4-Based Link Quality Protocols for WBASNs/IoTs in a Hospital Environment Using Fuzzy Logic
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Performance Optimization of the IEEE 802.15.4-Based Link Quality Protocols for WBASNs/IoTs in a Hospital Environment Using Fuzzy Logic

机译:基于模糊逻辑的医院环境中WBASN / IoT的基于IEEE 802.15.4的链路质量协议的性能优化

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The link quality protocols of the IEEE 802.15.4 show low performance in terms of reliability in a hospital environment. To achieve the optimal performance of these protocols, this paper proposes a fuzzy logic-based solution using a detailed empirical reliability assessment. This paper provides a solution through four steps: 1) identifying the suitable IEEE 802.15.4 protocols and validating their suitability for patient monitoring systems through simulation in Castalia 3.2 with the OMNet++ platform; 2) providing a detailed discussion and analysis regarding link quality mechanisms used; 3) creating a real-time test bed to perform the empirical experiments to find the actual link quality estimation for different hospital environments; and 4) proposing a fuzzy logic system (FLS), which maps the results of empirical experiments with the proposed FLS to obtain the optimal results. For empirical experiments, we divide the communication in the hospital into four environmental scenarios, including inside ward, corridor, ward to corridor, and ward to ward. Both mobile and static scenarios are considered with line of sight and non-line of sight. Different link quality threshold values for link quality indicator (LQI) and received signal strength indicator (RSSI) are found for the variety of hospital scenarios. A strong correlation is noticed between LQI and packet reception rate in most of the scenarios, whereas a weak correlation is found between RSSI and packet reception rate. Finally, the results are mapped to our proposed FLS to obtain the optimal performance.
机译:IEEE 802.15.4的链路质量协议在医院环境中的可靠性方面显示出较低的性能。为了实现这些协议的最佳性能,本文使用详细的经验可靠性评估提出了一种基于模糊逻辑的解决方案。本文通过四个步骤提供了一种解决方案:1)通过使用OMNet ++平台在Castalia 3.2中进行仿真,确定合适的IEEE 802.15.4协议并验证其对患者监护系统的适用性; 2)提供有关使用的链路质量机制的详细讨论和分析; 3)创建一个实时测试平台来进行经验实验,以找到针对不同医院环境的实际链路质量评估; 4)提出了模糊逻辑系统(FLS),该系统将经验实验的结果与提出的FLS进行映射,以获得最佳结果。为了进行实验,我们将医院中的通信分为四个环境场景,包括内部病房,走廊,病房到走廊以及病房到病房。视线和非视线都考虑了移动和静态方案。针对各种医院场景,发现了链路质量指标(LQI)和接收信号强度指标(RSSI)的不同链路质量阈值。在大多数情况下,LQI与数据包接收速率之间存在很强的相关性,而RSSI与数据包接收速率之间存在较弱的相关性。最后,将结果映射到我们提出的FLS以获得最佳性能。

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