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A 3D Coverage Algorithm Based on Complex Surfaces for UAVs in Wireless Multimedia Sensor Networks

机译:无线多媒体传感器网络中基于复曲面的无人机无人机覆盖算法

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摘要

Following the development of wireless multimedia sensor networks (WMSN), the coverage of the sensors in the network constitutes one of the key technologies that have a significant influence on the monitoring ability, quality of service, and network lifetime. The application environment of WMSN is always a complex surface, such as a hilly surface, that would likely cause monitoring shadowing problems. In this study, a new coverage-enhancing algorithm is presented to achieve an optimal coverage ratio of WMSN based on three-dimensional (3D) complex surfaces. By aiming at the complex surface, the use of a 3D sensing model, including a sensor monitoring model and a surface map calculation algorithm, is proposed to calculate the WMSN coverage information in an accurate manner. The coverage base map allowed the efficient estimation of the degree of monitoring occlusion efficiently and improved the system’s accuracy. To meet the requests of complex 3D surface monitoring tasks for multiple sensors, we propose a modified cuckoo search algorithm that considers the features of the WMSN coverage problem and combines the survival of the fittest, dynamic discovery probability, and the self-adaptation strategy of rotation. The evaluation outcomes demonstrate that the proposed algorithm can describe the 3D covering field but also improve both the coverage quality and efficiency of the WMSN on a complex surface.
机译:随着无线多媒体传感器网络(WMSN)的发展,网络中传感器的覆盖范围构成了对监视能力,服务质量和网络寿命产生重大影响的关键技术之一。 WMSN的应用环境始终是复杂的表面,例如丘陵表面,这可能会引起监视阴影问题。在这项研究中,提出了一种新的覆盖增强算法,以基于三维(3D)复杂曲面实现WMSN的最佳覆盖率。针对复杂的表面,提出了使用3D传感模型(包括传感器监视模型和表面贴图计算算法)来精确计算WMSN覆盖信息的方法。覆盖范围底图允许有效地估计监视遮挡的程度,并提高了系统的准确性。为了满足用于多个传感器的复杂3D表面监视任务的要求,我们提出了一种改进的布谷鸟搜索算法,该算法考虑了WMSN覆盖问题的特征,并结合了优胜劣汰,动态发现概率和旋转的自适应策略。评估结果表明,该算法不仅可以描述3D覆盖区域,而且可以提高WMSN在复杂表面上的覆盖质量和效率。

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