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Poster Abstract: Obstacle and Connectivity Aware Wireless Video Sensor Deployment for 3D Indoor Monitoring

机译:海报摘要:3D室内监控的障碍和连接意识无线视频传感器部署

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Wireless Video Sensor Networks (WVSNs) have been widely proposed for monitoring spatial environments. Dissimilar from traditional Wireless Sensor Networks (WSNs) where nodes such as thermal and light sensors are often considered in 2D and with omnidirectional sensing ranges, the sensing range of a video sensor in WVSNs is deemed as directional and usually cognized as a rectangular pyramid shape in 3D environments. Moreover, within indoor spaces, obstacles such as ceiling lights and furniture can easily block the line-of-sight of a video sensor. These new challenges render the traditional deployment solutions for WSNs or 2D modeling environments as impractical to solve the WVSN deployment problem for 3D indoor monitoring. In this poster, we strive to tackle the WVSN deployment problem for 3D indoor monitoring with the consideration of ensuring coverage, connectivity and obstacle awareness. We first model the general problem in a continuous 3D space to minimize the total number of required video sensors. We then convert it into a discrete version problem by incorporating 3D grids, which can achieve arbitrary approximation precision by adjusting the grid granularity. We develop a series of mechanisms to handle the obstacles in the 3D environment and propose an emcient greedy heuristic and enhanced DFS algorithms yielding high quality solutions.
机译:无线视频传感器网络(WVSNs)已被广泛提出了监测空间环境。异种从那里如热和光传感器节点通常用在2D和全向感测范围考虑传统无线传感器网络(WSN),在WVSNs视频传感器的感测范围,视为定向,通常认定为矩形棱锥形状中3D环境。而且,室内空间内,障碍物诸如天花板灯和家具可以很容易地阻挡线的视线的视频传感器。这些新的挑战,使无线传感器网络或2D建模环境为不切实际的解决3D室内监控WVSN部署问题的传统部署解决方案。在这张海报中,我们努力与代价确保覆盖,连通性和意识障碍,解决了3D室内监控WVSN部署问题。我们首先在一个连续的三维空间模型的一般问题,以尽量减少所需的视频传感器的总数。然后,我们通过将三维网格,它可以通过调整网格粒度达到任意精度逼近其转换成离散的版本问题。我们制定了一系列的机制来处理在3D环境中的障碍,并提出了一个emcient启发式贪婪和增强的DFS算法产生高质量的解决方案。

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