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An Uneven Node Self-Deployment Optimization Algorithm for Maximized Coverage and Energy Balance in Underwater Wireless Sensor Networks

机译:一种不均匀节点自部署优化算法用于在水下无线传感器网络中的最大覆盖和能量平衡

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摘要

The underwater wireless sensor networks (UWSNs) have been applied in lots of fields such as environment monitoring, military surveillance, data collection, etc. Deployment of sensor nodes in 3D UWSNs is a crucial issue, however, it is a challenging problem due to the complex underwater environment. This paper proposes a growth ring style uneven node depth-adjustment self-deployment optimization algorithm (GRSUNDSOA) to improve the coverage and reliability of UWSNs, meanwhile, and to solve the problem of energy holes. In detail, a growth ring style-based scheme is proposed for constructing the connective tree structure of sensor nodes and a global optimal depth-adjustment algorithm with the goal of comprehensive optimization of both maximizing coverage utilization and energy balance is proposed. Initially, the nodes are scattered to the water surface to form a connected network on this 2D plane. Then, starting from sink node, a growth ring style increment strategy is presented to organize the common nodes as tree structures and each root of subtree is determined. Meanwhile, with the goal of global maximizing coverage utilization and energy balance, all nodes depths are computed iteratively. Finally, all the nodes dive to the computed position once and a 3D underwater connected network with non-uniform distribution and balanced energy is constructed. A series of simulation experiments are performed. The simulation results show that the coverage and reliability of UWSN are improved greatly under the condition of full connectivity and energy balance, and the issue of energy hole can be avoided effectively. Therefore, GRSUNDSOA can prolong the lifetime of UWSN significantly.
机译:水下无线传感器网络(UWSNS)已应用于许多领域,例如环境监测,军事监控,数据收集等.3D UWSN中的传感器节点部署是一个重要问题,但是由于它是一个具有挑战性的问题复杂的水下环境。本文提出了一种增长环风格不均匀节点深度调整自部署优化算法(GRSundsoA),以提高UWSNS的覆盖率和可靠性,同时解决能量孔的问题。详细地,提出了一种用于构建传感器节点的连接树结构的基于生长环式的方案,以及全局最佳深度调整算法,其提出了最大化覆盖利用率和能量平衡的综合优化。最初,节点散射到水面以在该2D平面上形成连接的网络。然后,从汇总节点开始,提出了一种增长环样式增量策略以将公共节点组织为树结构,并且确定子树的每个根。同时,通过全球最大化覆盖利用率和能量平衡的目标,迭代地计算所有节点深度。最后,构造了所有节点潜入计算位置和具有非均匀分布和平衡能量的3D水下连接网络。进行一系列仿真实验。仿真结果表明,在完全连接和能量平衡的条件下,UWSN的覆盖率和可靠性大大提高,并且可以有效地避免能量孔的问题。因此,Grsundsoa可以显着延长UWSN的寿命。

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