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Optimization of Self-Directed Target Coverage in Wireless Multimedia Sensor Network

机译:无线多媒体传感器网络中自控目标覆盖的优化

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摘要

Video and image sensors in wireless multimedia sensor networks (WMSNs) have directed view and limited sensing angle. So the methods to solve target coverage problem for traditional sensor networks, which use circle sensing model, are not suitable for WMSNs. Based on the FoV (field of view) sensing model and FoV disk model proposed, how expected multimedia sensor covers the target is defined by the deflection angle between target and the sensor's current orientation and the distance between target and the sensor. Then target coverage optimization algorithms based on expected coverage value are presented for single-sensor single-target, multisensor single-target, and single-sensor multitargets problems distinguishingly. Selecting the orientation that sensor rotated to cover every target falling in the FoV disk of that sensor for candidate orientations and using genetic algorithm to multisensor multitargets problem, which has NP-complete complexity, then result in the approximated minimum subset of sensors which covers all the targets in networks. Simulation results show the algorithm's performance and the effect of number of targets on the resulting subset.
机译:无线多媒体传感器网络(WMSN)中的视频和图像传感器具有定向视图,并且感应角度有限。因此,使用圆感应模型解决传统传感器网络目标覆盖问题的方法不适用于WMSN。基于提出的FoV(视场)传感模型和FoV磁盘模型,预期的多媒体传感器如何覆盖目标由目标与传感器当前方向之间的偏转角以及目标与传感器之间的距离定义。然后针对单传感器单目标,多传感器单目标和单传感器多目标问题,提出了基于期望覆盖值的目标覆盖优化算法。选择传感器旋转的方向以覆盖落入该传感器FoV盘中的每个目标的候选方向,然后使用遗传算法解决具有NP完全复杂性的多传感器多目标问题,然后得出覆盖所有传感器的传感器的近似最小子集。网络中的目标。仿真结果表明了该算法的性能以及目标数量对所得子集的影响。

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