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FFRP: Dynamic Firefly Mating Optimization Inspired Energy Efficient Routing Protocol for Internet of Underwater Wireless Sensor Networks

机译:FFRP:动态萤火虫交配优化启发了用于水下无线传感器网络互联网的节能路由协议

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摘要

Energy-efficient and reliable data gathering using highly stable links in underwater wireless sensor networks (UWSNs) is challenging because of time and location-dependent communication characteristics of the acoustic channel. In this paper, we propose a novel dynamic firefly mating optimization inspired routing scheme called FFRP for the internet of UWSNs-based events monitoring applications. The proposed FFRP scheme during the events data gathering employs a self-learning based dynamic firefly mating optimization intelligence to find the highly stable and reliable routing paths to route packets around connectivity voids and shadow zones in UWSNs. The proposed scheme during conveying information minimizes the high energy consumption and latency issues by balancing the data traffic load evenly in a large-scale network. In additions, the data transmission over highly stable links between acoustic nodes increases the overall packets delivery ratio and network throughput in UWSNs. Several simulation experiments are carried out to verify the effectiveness of the proposed scheme against the existing schemes through NS2 and AquaSim 2.0 in UWSNs. The experimental outcomes show the better performance of the developed protocol in terms of high packets delivery ratio (PDR) and network throughput (NT) with low latency and energy consumption (EC) compared to existing routing protocols in UWSNs.
机译:由于声道的时间和位置相关的通信特性,使用水下无线传感器网络(UWSNS)中的高度稳定链接的节能可靠的数据收集是具有挑战性的。在本文中,我们提出了一种新的动态萤火虫配合优化灵感,称为FFRP的路由方案,用于基于UWSNS的事件监控应用程序的互联网。在事件数据收集期间提出的FFRP方案采用了一种基于自学习的动态萤火虫交配优化智能,以找到高度稳定和可靠的路径路径,以在UWSN中的连接空隙和阴影区域周围路由数据包。传送信息期间的所提出的方案通过平衡在大型网络中均匀的数据流量负载来最大限度地减少高能耗和延迟问题。另外,声学节点之间的高度稳定链路上的数据传输增加了UWSN中的整体分组传递比和网络吞吐量。进行了几种模拟实验,以验证所提出的方案对现有方案的有效性通过UWSN中的NS2和Aquasim 2.0。实验结果表明,与UWSN中的现有路由协议相比,在具有低延迟和能量消耗(EC)的高延迟和能量消耗(EC)方面表现出开发协议的更好性能。

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