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Hybrid IEEE 802.15.6 Wireless Body Area Networks Interference Mitigation Model for High Mobility Interference Scenarios

机译:高移动性干扰场景的混合IEEE 802.15.6无线人体局域网干扰缓解模型

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The field of Wireless Sensor Networks (WSNs) has revolutionized tremendously in the recent past with its major application in Wireless Body Area Networks (WBANs). This has in the same dimension attracted immense interests from the researchers and technology providers. The operational modality of the WBANs is that a few sensor nodes are placed in or around the body and that they are meant to operate within a limited condition while providing high performance in terms of WBAN life time, high throughput, high data reliability, minimum or no delay and low power consumption. As most of the WBAN operates within the universal Industrial, Scientific and Medical (ISM) Narrow Band (NB) wireless band (2.4 style="font-family:""> style="font-family:Verdana;">Ghz) frequency band, this has posed a challenge in respect to inter, intra and co-channel interference especially in dense areas and high mobility scenarios. As well the body posture changes dynamically due to these mobility effects. In this paper, we propose a hybrid WBAN interference miti style="font-family:""> style="font-family:Verdana;">gation model based on Carrier Sense Multiple Access with Collision Avoidance (CSMA/CA) Contention Window (CW) approach and User style="font-family:Verdana;"> Priority (UP) queues. Using Omnet++ simulation, a comparison to the IEEE 802.15.6 based WBAN protocol is presented under the standing, walking sitting and Lying postural mobility scenarios. The results show that the proposed hybrid model outperforms IEEE 802.15.6 based CSMA/CA protocol in areas of network throughput, bandwidth efficiency and network delay in these mobility postures.
机译:无线传感器网络(WSN)领域在无线体域网(WBAN)中的主要应用近来已发生了巨大的变革。这在同一方面吸引了研究人员和技术提供者的极大兴趣。 WBAN的操作方式是在体内或周围放置一些传感器节点,它们旨在在有限的条件下运行,同时在WBAN寿命,高吞吐量,高数据可靠性,最小或最小方面提供高性能。无延迟,低功耗。由于大多数WBAN都在通用的工业,科学和医学(ISM)窄带(NB)无线频带内运行(2.4 style =“ font-family:”“> style = “ font-family:Verdana;“> Ghz频段,这对帧间,帧内和同频道干扰提出了挑战,尤其是在密集地区和高移动性场景中。由于这些移动性,人体姿势也会动态变化在本文中,我们提出了一种混合的WBAN干扰抑制方案 style =“ font-family:”“> style =” font-family:Verdana;“>基于载波侦听多路访问的定位模型使用冲突避免(CSMA / CA)竞争窗口(CW)方法和用户 style =“ font-family:Verdana;”>优先级(UP)队列。使用Omnet ++仿真,在站立,步行坐着和躺着的姿势移动情况下,与基于IEEE 802.15.6的WBAN协议进行了比较。结果表明,在这些移动状态下,所提出的混合模型在基于网络吞吐量,带宽效率和网络延迟方面优于基于IEEE 802.15.6的CSMA / CA协议。

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