3D- Deployment of Magnetic Induction Relays in Underwater Sensor Networks

Sai Wang, Y. Shin
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引用次数: 6

Abstract

Magnetic induction (MI) communication is a promising technology for underwater sensor networks (UWSNs) due to several benefits such as small transmission delay and multipath fading negligibility. However, the majority deployment strategies of the MI relays focus on 1D and 2D networks. In this paper, a optimal relay deployment algorithm is proposed to deploy the relay nodes in the 3D UWSN. To balance the number of sensor nodes in each clustering space, the K-means algorithm is used to divide the network space. In addition, the locations of the relay nodes are important for saving energy. To solve this issue, we adopt a gradient descent algorithm to find the optimal coordinates of the relay nodes. Numerical analysis shows that the proposed algorithm is a practical deployment strategy.
水下传感器网络中磁感应继电器的三维部署
磁感应通信技术具有传输时延小、多径衰落可忽略等优点,是水下传感器网络的一种很有前途的通信技术。然而,大多数MI中继的部署策略都集中在一维和二维网络上。本文提出了一种最优中继部署算法,用于三维UWSN中继节点的部署。为了平衡每个聚类空间中传感器节点的数量,使用K-means算法对网络空间进行划分。此外,中继节点的位置对节能也很重要。为了解决这一问题,我们采用梯度下降算法寻找中继节点的最优坐标。数值分析表明,该算法是一种实用的部署策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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