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An Enhanced Virtual Force Algorithm for Diverse k-Coverage Deployment of 3D Underwater Wireless Sensor Networks

机译:用于3D水下无线传感器网络的多种k覆盖部署的增强型虚拟力算法

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摘要

The combination of Wireless Sensor Networks (WSNs) and edge computing not only enhances their capabilities, but also motivates a series of new applications. As a typical application, 3D Underwater Wireless Sensor Networks (UWSNs) have become a hot research issue. However, the coverage of underwater sensor networks problem must be solved, for it has a great significance for the network’s capacity for information acquisition and environment perception, as well as its survivability. In this paper, we firstly study the minimal number of sensor nodes needed to build a diverse k-coverage sensor network. We then propose a k-Equivalent Radius enhanced Virtual Force Algorithm (called k-ERVFA) to achieve an uneven regional coverage optimization for different k-coverage requirements. Theoretical analysis and simulation experiments are carried out to demonstrate the effectiveness of our proposed algorithm. The detailed performance comparisons show that k-ERVFA acquires a better coverage rate in high k-coverage sub-regions, thus achieving a desirable diverse k-coverage deployment. Finally, we perform sensitivity analysis of the simulation parameters and extend k-ERVFA to special cases such as sensor-sparse regions and time-variant situations.
机译:无线传感器网络(WSN)与边缘计算的结合不仅增强了它们的功能,而且还激发了一系列新应用。作为一种典型的应用,3D水下无线传感器网络(UWSN)已成为研究的热点。但是,必须解决水下传感器网络的覆盖范围问题,因为这对网络的信息获取能力,环境感知能力和生存能力具有重大意义。在本文中,我们首先研究了构建多样化的k覆盖率传感器网络所需的最少传感器节点数。然后,我们提出了一种k等效半径增强虚拟力算法(称为k-ERVFA),以针对不同的k覆盖率要求实现不均匀的区域覆盖优化。理论分析和仿真实验表明了该算法的有效性。详细的性能比较表明,k-ERVFA在高k覆盖率子区域中具有更好的覆盖率,从而实现了理想的多样化k覆盖率部署。最后,我们对仿真参数进行灵敏度分析,并将k-ERVFA扩展到特殊情况下,例如传感器稀疏区域和时变情况。

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