基于增强空避和路由协议的水声传感器网络数据优化

M. Garg, Sachin Sharma, Vincent Balu, D. Sinha, P. Bhatt, Akash Kumar Bhagat
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引用次数: 2

摘要

由于水下交互范围或带宽有限,水下传感器节点能量有限,在更大范围内部署多跳水声传感器网络(usasn)对网络的可靠数据通信和生存能力提出了创新挑战。在水下设备维护、海洋监测、海洋资源管理、污染检测等海洋勘探应用中,无人潜艇的作用越来越重要。为了克服这些困难,达到最大化水下SNs数据传输率和最小化能耗的目的,路由就成为必要。在usasn中,路由协议将保证从源节点到目的节点的有效、可靠的数据通信,因此路由协议模型是一个具有吸引力的研究课题。最近设计了几种路由技术。本文提出了一种具有增强空避和路由(usn - daevar)协议的水声传感器网络数据优化。提出的usn - daevar技术旨在使用熟练的路由协议提供有效的数据传输过程。在提出的usn - daevar技术中,本研究采用了马鹿算法(RDA)。此外,usasn - daevar技术在usasn中计算最优路由。为了展示usn - daevar技术的有效效果,进行了广泛的实验分析。实验结果反映了usn - daevar模型的增强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Underwater Acoustic Sensor Network Data Optimization with Enhanced Void Avoidance and Routing Protocol
Deployment of a multi-hop underwater acoustic sensor network (UASN) in a larger region presents innovative challenges in reliable data communications and survivability of network because of the limited underwater interaction range or bandwidth and the limited energy of underwater sensor nodes. UASNs are becoming very significant in ocean exploration applications, like underwater device maintenance, ocean monitoring, ocean resource management, pollution detection, and so on. To overcome those difficulties and attains the purpose of maximizing data delivery ratio and minimizing energy consumption of underwater SNs, routing becomes necessary. In UASN, as the routing protocol will guarantee effective and reliable data communication from the source node to the destination, routing protocol model was an alluring topic for researchers. There were several routing techniques devised recently. This manuscript presents an underwater acoustic sensor network data optimization with enhanced void avoidance and routing (UASN-DAEVAR) protocol. The presented UASN-DAEVAR technique aims to present an effective data transmission process using proficient routing protocols. In the presented UASN-DAEVAR technique, a red deer algorithm (RDA) is employed in this study. In addition, the UASN-DAEVAR technique computes optimal routes in the UASN. To exhibit the effectual results of the UASN-DAEVAR technique, a wide spread experimental analysis is made. The experimental outcomes represented the enhancements of the UASN-DAEVAR model.
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