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A bio-inspired hierarchical mobile sensor network for fast deployment and displacement in human impassible environments

机译:受生物启发的分层移动传感器网络,可在人类无法通过的环境中快速部署和移动

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Beyond a traditional wireless sensor network, a mobile sensor network has several advantages when deployed in human impassable environments. The mobile nodes can move to search and gather environmental information while they automatically self-organize to form ad-hoc network for data transmission. However, it is more challenging to achieve such possibilities because of the demand of sensor deployment and displacement of self-organized networks. In this paper we present our approach to a bio-inspired hierarchical sensor network that can be fast deployed and displaced in human impassable environments. The hierarchical network consists of mothership and child sensor nodes in which the child sensor nodes are automatically deployed and replaced by the mothership which is remotely controlled by the human operator. We also investigate possibilities of self-organization of nonidentical mobile sensor platforms for data collection and transmission. With several real-world experiments, we have demonstrated the concept of fast deployment and displacement as well as self-organization of the hierarchical sensor network.
机译:除了传统的无线传感器网络外,移动传感器网络在人类无法通行的环境中部署时,还具有许多优势。移动节点可以移动以搜索和收集环境信息,同时它们可以自动自组织以形成用于数据传输的自组织网络。然而,由于传感器部署和自组织网络的移位的需求,实现这种可能性更具挑战性。在本文中,我们介绍了一种基于生物的分层传感器网络的方法,该方法可以在人类无法通行的环境中快速部署和替换。分层网络由母舰和子传感器节点组成,其中子传感器节点会自动部署并由由操作员远程控制的母舰取代。我们还研究了非同一移动传感器平台自组织数据收集和传输的可能性。通过一些实际实验,我们证明了分层传感器网络的快速部署和替换以及自组织的概念。

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