Voronoi-Based Indoor Deployment of Mobile Sensors Network with Obstacles

K. Eledlebi, D. Ruta, F. Saffre, Yousof Al-Hammadi, A. Isakovic
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引用次数: 8

Abstract

Efficient deployment of wireless sensor network (WSN) is one of the key challenges of the Internet of Things (IoT), and one where self-organizing processes and adaptation to obstacle-rich environments are critical. We developed a Voronoi tessellation based algorithm, BISON (Bio-inspired Self-organized Network), designed to insert and self-deploy nodes of WSN into any unknown, obstacle rich indoor environment, satisfying both, the coverage and the connectivity demands. To limit the power consumption and simulate realistic real-time environment discovery, BISON confines each node to use only locally sensed information, while avoiding obstacles and connecting with neighboring nodes. The algorithm is assessed in terms of the critical deployment evaluation metrics: the area coverage and distance traveled. The results reveal fast convergence to a fully connected network with low deployment costs.
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基于voronoi的室内障碍物移动传感器网络部署
无线传感器网络(WSN)的高效部署是物联网(IoT)的关键挑战之一,其中自组织过程和对多障碍环境的适应至关重要。我们开发了一种基于Voronoi镶嵌的算法BISON (Bio-inspired Self-organized Network),旨在将WSN节点插入和自部署到任何未知的、充满障碍的室内环境中,同时满足覆盖和连接需求。为了限制功耗和模拟真实的实时环境发现,BISON限制每个节点只使用本地感知的信息,同时避开障碍物并与相邻节点连接。该算法是根据关键的部署评估指标进行评估的:面积覆盖和行驶距离。结果表明,快速收敛到全连接网络,部署成本低。
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