Mahfoudh Saoucene
School of Engineering, Computing, and Design, Dar Al-Hekma University, Jeddah 6702, Saudi Arabia.
Sensors (Basel). 2023 Oct 17;23(20):8514. doi: 10.3390/s23208514.
The diversity of applications supported by Underwater Sensor Networks (UWSNs) explains the success of this type of network and the increasing interest in exploiting and monitoring seas and oceans. One of the most important research fields is network deployment, since this deployment will affect all other research aspects in the UWSNs. Moreover, the initial random deployment resulting from scattering underwater sensor nodes on the network area's surface does not ensure this area's coverage and network connectivity. In this research, we propose a self-adjustment redeployment protocol that enhances network coverage and connectivity while reducing the energy consumed during network deployment. This protocol takes into account the peculiar dynamism of the underwater environment due to the water currents. First, we study the impact of these water currents on network deployment. Then, we exploit these water currents to adjust the nodes' positions to achieve total area coverage and reduce the energy consumed during the deployment by reducing the total distance traveled by the underwater sensor nodes. Simulation results show that the proposed protocol achieves a very high coverage rate (97%) and reduces the distance traveled by nodes during the deployment by 41%.
水下传感器网络(UWSN)所支持的应用的多样性解释了这类网络的成功以及对开发和监测海洋日益增长的兴趣。最重要的研究领域之一是网络部署,因为这种部署会影响UWSN中的所有其他研究方面。此外,通过将水下传感器节点散布在网络区域表面而进行的初始随机部署并不能确保该区域的覆盖范围和网络连通性。在本研究中,我们提出了一种自调整重新部署协议,该协议在增强网络覆盖范围和连通性的同时,减少了网络部署期间消耗的能量。该协议考虑了由于水流导致的水下环境特有的动态性。首先,我们研究这些水流对网络部署的影响。然后,我们利用这些水流来调整节点的位置,以实现总面积覆盖,并通过减少水下传感器节点行进的总距离来降低部署期间消耗的能量。仿真结果表明,所提出的协议实现了非常高的覆盖率(97%),并将部署期间节点行进的距离减少了41%。