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A Secure Communication in IoT Enabled Underwater and Wireless Sensor Network for Smart Cities

机译:IOT中的安全通信使能智能城市的水下和无线传感器网络

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摘要

Nowadays, there is a growing trend in smart cities. Therefore, the Internet of Things (IoT) enabled Underwater and Wireless Sensor Networks (I-UWSN) are mostly used for monitoring and exploring the environment with the help of smart technology, such as smart cities. The acoustic medium is used in underwater communication and radio frequency is mostly used for wireless sensor networks to make communication more reliable. Therefore, some challenging tasks still exist in I-UWSN, i.e., selection of multiple nodes’ reliable paths towards the sink nodes; and efficient topology of the network. In this research, the novel routing protocol, namely Time Based Reliable Link (TBRL), for dynamic topology is proposed to support smart city. TBRL works in three phases. In the first phase, it discovers the topology of each node in network area using a topology discovery algorithm. In the second phase, the reliability of each established link has been determined while using two nodes reliable model for a smart environment. This reliability model reduces the chances of horizontal and higher depth level communication between nodes and selects next reliable forwarders. In the third phase, all paths are examined and the most reliable path is selected to send data packets. TBRL is simulated with the help of a network simulator tool (NS-2 AquaSim). The TBRL is compared with other well known routing protocols, i.e., Depth Based Routing (DBR) and Reliable Energy-efficient Routing Protocol (R-ER R), to check the performance in terms of end to end delay, packet delivery ratio, and energy consumption of a network. Furthermore, the reliability of TBRL is compared with 2H-ACK and 3H-RM. The simulation results proved that TBRL performs approximately 15% better as compared to DBR and 10% better as compared to R-ER R in terms of aforementioned performance metrics.
机译:如今,智能城市存在日益增长的趋势。因此,在水下和无线传感器网络(I-UWSN)的情况下,事物(IOT)的互联网主要用于在智能技术的帮助下监控和探索环境,例如智能城市。声学介质用于水下通信,射频主要用于无线传感器网络,以使通信更可靠。因此,I-UWSN,即,在I-UWSN中仍存在一些挑战性的任务,即选择朝向宿节点的多个节点的可靠路径;和高效的网络拓扑。在本研究中,提出了新的路由协议,即动态拓扑的基于时间的可靠链路(TBRL),以支持智能城市。 TBRL在三个阶段工作。在第一阶段,它使用拓扑发现算法发现网络区域中每个节点的拓扑。在第二阶段,在使用两个节点可靠模型的智能环境中,已经确定了每个已建立的链路的可靠性。该可靠性模型减少了节点之间水平和更高深度通信的机会,并选择下一个可靠的转发器。在第三阶段,检查所有路径,并选择最可靠的路径以发送数据包。在网络模拟器工具(NS-2 Aquasim)的帮助下模拟TBRL。将TBRL与其他众所周知的路由协议,即基于深度的路由(DBR)和可靠的节能路由协议(R-ER R)进行比较,以检查终端延迟,分组传递比率的性能,以及网络能耗。此外,将TBRL的可靠性与2H-ACK和3H-RM进行比较。仿真结果证明,与DBR相比,TBRL比DBR相比,与上述性能指标相比,与R-ER R相比,10%更好。

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