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Energy efficient multi-objective evolutionary routing scheme for reliable data gathering in Internet of underwater acoustic sensor networks

机译:水下隔音传感器网络互联网上可靠数据收集的节能多目标进化路由方案

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摘要

Earth's surface is covered with two-thirds of water. The marine world covers the lakes, rivers and sea and is rich in natural resources largely unexplored by human beings. Recently, underwater wireless sensor network (UWSN) with the advancement in the Internet of underwater smart things has emerged as promising networking techniques to explore the mysteries of vastly unexplored ocean environments for several underwater applications. These applications include offshore exploration, pollution monitoring, disaster prevention, oceanographic data collection, offshore oil fields monitoring, tactical surveillance applications and several others. However, the underwater channel impairments caused by multipath effects, fading, bit errors, variable and high latency and low bandwidth severely limits the data transmission reliability for UWSNs-based applications. This results in poor quality-aware data gathering in UWSNs. Therefore, designing a quality of service (QoS)-aware data gathering protocol to monitor and explore oceans is challenging in the underwater environments. In this paper, we propose a bio-inspired multi-objective evolutionary routing protocol (called MERP) for UWSNs-based applications. The designed routing protocol exploits the features of the natural evolution of the multi-objective genetic algorithm in order to provide reliable and energy-aware information gathering in UWSNs. The extensive simulation results show that the developed protocol attains its defined goals compared to existing UWSNs-based routing protocols during monitoring and exploring underwater environments. (C) 2019 Elsevier B.V. All rights reserved.
机译:地球表面覆盖着三分之二的水。海洋世界涵盖了湖泊,河流和海洋,富裕的自然资源富裕地是人类的。最近,水下无线传感器网络(UWSN)与水下智能互联网互联网的进步已经成为有前途的网络技术,用于探索几个水下应用的大量未开发的海洋环境的谜团。这些应用包括海上勘探,污染监测,防灾,海洋数据收集,海上油田监测,战术监测应用和其他几个。然而,由多径效应,衰落,比特错误,变量和高延迟和低带宽引起的水下渠道障碍严重限制了基于UWSNS的应用的数据传输可靠性。这导致在UWSN中收集的差的质量感知数据。因此,设计服务质量(QoS) - 探索海洋的服务质量(QoS)--Aware数据收集协议在水下环境中具有挑战性。在本文中,我们提出了一种基于UWSNS的应用程序的生物启发的多目标进化路由协议(称为MERP)。设计的路由协议利用多目标遗传算法的自然演进的特征,以便在UWSN中提供可靠和能量感知信息。广泛的仿真结果表明,与监视和探索水下环境期间的现有UWSNS的路由协议相比,开发的协议与现有的UWSNS的路由协议相比,其定义的目标。 (c)2019 Elsevier B.v.保留所有权利。

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