首页> 外文期刊>International Journal of Distributed Sensor Networks >A priority-based congestion-avoidance routing protocol using IoT-based heterogeneous medical sensors for energy efficiency in healthcare wireless body area networks
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A priority-based congestion-avoidance routing protocol using IoT-based heterogeneous medical sensors for energy efficiency in healthcare wireless body area networks

机译:使用基于IoT的异构医疗传感器的基于优先级的拥塞避免路由协议,以实现医疗保健无线人体局域网中的能源效率

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A wireless body area network is a collection of Internet of Things–based wearable heterogeneous computing devices primarily used in healthcare monitoring applications. A lot of research is in process to reduce the cost and increase efficiency in medical industry. Low power sensor nodes are often attached to high-risk patients for real-time remote monitoring. These sensors have limited resources such as storage capacity, battery life, computational power, and channel bandwidth. The current work proposes a multi-hop Priority-based Congestion-avoidance Routing Protocol using IoT based heterogeneous sensors for energy efficiency in wireless body area networks. The objective is to devise a routing protocol among sensor nodes such that it has minimum delay and higher throughput for emergency packets using IoT based sensor nodes, optimal energy consumption for longer network lifetime, and efficient scarce resource utilization. In our proposed work, data traffic is categorized into normal and emergency or life-critical data. For normal data traffic, next-hop selection will be selected based upon three parameters; residual energy, congestion on forwarder node, and signal-to-noise ratio of the path between source and forwarder node. We use the data aggregation and filtration technique to reduce the network traffic load and energy consumption. A priority-based routing scheme is also proposed for life-critical data to have less delay and greater throughput in emergency situations. Performance of the proposed protocol is evaluated with two cutting-edge routing techniques iM-SIMPLE and Optimized Cost Effective and Energy Efficient Routing. The proposed model outperforms in terms of network throughput, traffic load, energy consumption, and lifespan.
机译:无线人体局域网是主要用于医疗保健监视应用程序的基于物联网的可穿戴异构计算设备的集合。为了降低成本并提高医疗行业的效率,正在进行大量研究。低功率传感器节点通常连接到高风险患者,以进行实时远程监视。这些传感器的资源有限,例如存储容量,电池寿命,计算能力和通道带宽。当前的工作提出了一种基于多跳优先级的拥塞避免路由协议,该协议使用基于IoT的异构传感器来提高无线人体局域网的能效。目的是设计传感器节点之间的路由协议,以使它具有最小的延迟和更高的吞吐量,从而可以使用基于IoT的传感器节点来处理紧急数据包,为实现更长的网络寿命而优化能耗,并有效地利用稀缺资源。在我们提出的工作中,数据流量分为正常数据和紧急数据或对生命至关重要的数据。对于正常的数据流量,将基于三个参数选择下一跳选择。剩余能量,转发器节点上的拥塞以及源与转发器节点之间路径的信噪比。我们使用数据聚合和过滤技术来减少网络流量负载和能耗。还提出了基于优先级的路由方案,以使生命攸关的数据在紧急情况下具有更少的延迟和更大的吞吐量。使用两种最先进的路由技术iM-SIMPLE和优化的成本效益和节能路由来评估所提出协议的性能。所提出的模型在网络吞吐量,流量负载,能耗和寿命方面均优于。

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