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Minimizing Interference in Wireless Mesh Networks Based Telemedicine System

机译:基于无线网状网络的远程医疗系统中的干扰最小化

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Problem statement: It has been always a challenging task for the researchers to incorporate information technology advancements in the medical profession. In order to guarantee a reliable network infrastructure that supports the employment of wireless technology and mobile devices, a hybrid infrastructure that integrates wireless networks with the traditional wired Local Area Networks (LANs) is needed. The wired network will provide the stability to the network, improve the overall performance of the hybrid network and provide an alternative to the mobile routes, hence increasing the degree of redundancy and reliability. In recent years, Wireless Mesh Networks (WMN) have become more popular than ever. WMN has advantage of robust fault tolerance. Even if some of the mesh nodes are incapable, there exist many other alternative nodes to serve relay. In addition, multi-hop of WMN can not only spread coverage but also save both cabling cost and human resource. Health care can drastically benefit by incorporating technological advancements, particularly wireless mesh technology. In this study we have presented a telemedicine system for rural and urban scenario based on WMN so that the medical community gets benefited by state of art broadband connectivity. Also in this study we have addressed a critical issue of performance degradation in WMN due to interference and varying load. Approach: For this we have proposed a routing protocol AODV LBIARM. We have incorporated our routing metric Load Balancing Interference Aware Routing Metric (LBIARM) in AODV protocol to minimize the interference and cater for varying traffic load in multi hop WMN based telemedicine system, thereby maximizing network throughput. Results and Conclusion: This protocol is evaluated by simulating in Opnet Modeler 16.1 PL1. We have found that our proposed protocol performs better than AODV WCETT and AODV HOP-COUNT.
机译:问题陈述:研究人员将信息技术的进步纳入医学界一直是一项艰巨的任务。为了保证支持无线技术和移动设备使用的可靠网络基础结构,需要将无线网络与传统有线局域网(LAN)集成在一起的混合基础结构。有线网络将为网络提供稳定性,提高混合网络的整体性能,并提供移动路由的替代方案,从而提高冗余度和可靠性。近年来,无线网状网络(WMN)变得比以往更受欢迎。 WMN具有强大的容错能力。即使某些网状节点无法运行,也存在许多其他替代节点可用于中继。此外,WMN的多跳不仅可以扩展覆盖范围,还可以节省布线成本和人力资源。通过结合技术进步,尤其是无线网状技术,医疗保健将受益匪浅。在这项研究中,我们提出了一种基于WMN的农村和城市场景的远程医疗系统,以便医学界从最先进的宽带连接中受益。同样在这项研究中,我们还解决了由于干扰和负载变化而导致WMN性能下降的关键问题。方法:为此,我们提出了一种路由协议AODV LBIARM。我们在AODV协议中合并了路由度量标准负载平衡干扰感知路由度量标准(LBIARM),以在基于多跳WMN的远程医疗系统中最大程度地减少干扰并满足不断变化的业务负载,从而最大程度地提高网络吞吐量。结果和结论:通过在Opnet Modeler 16.1 PL1中进行仿真来评估该协议。我们发现,我们提出的协议比AODV WCETT和AODV HOP-COUNT性能更好。

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