A New IoT Power-Limited Wireless Sensor Networks Routing Protocol Utilizing Computational Intelligence

Reem Riyad Elyyan, Khalid A. Darabkh
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Abstract

Finding a cogent network architecture with efficient energy usage is essential given the rise of the Internet of Things (IoT), which poses a new barrier to the widespread use of IoT applications globally. This research investigates the suggested protocol in a novel simulation environment by dividing the network area into equal hexagonal cells and using the arithmetic optimization algorithm, a new meta-heuristic technique, to assist the cluster head assortment. The double mobile sinks are then deployed to travel along two constrained hexagonal itineraries in order to gather sensory data. Additionally, a cost-effective routing approach is suggested to prolong the lifespan of IoT sensor nodes. In the end, a comparison between the suggested protocol and the conventional techniques reveals a significant decrease in the average energy consumption of sensor nodes, hence extending the lifetime of the network. Particularly, as far as the mobility is concerned, the suggested protocol performs 372 times better than the energy-efficient geographic routing protocol and 669 times better than the rendezvous-based routing protocol in terms of the first node to die.
利用计算智能的新型物联网限电无线传感器网络路由协议
鉴于物联网(IoT)的兴起,寻找一种高效利用能源的合理网络架构至关重要,这对全球物联网应用的广泛应用构成了新的障碍。本研究在新颖的模拟环境中研究了所建议的协议,方法是将网络区域划分为相等的六边形单元,并使用算术优化算法(一种新的元启发式技术)来辅助簇头分配。然后,部署双移动汇沿着两条受限的六边形路线行进,以收集感知数据。此外,还提出了一种具有成本效益的路由方法,以延长物联网传感器节点的使用寿命。最后,通过比较建议的协议和传统技术,发现传感器节点的平均能耗显著降低,从而延长了网络的使用寿命。特别是在移动性方面,就第一个死亡节点而言,建议的协议比节能地理路由协议好 372 倍,比基于会合的路由协议好 669 倍。
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