Data Gathering Optimization in Wireless Sensor Networks Using Unmanned Aerial Vehicles

Valentin-Alexandru Vladuta, Ioana Matei, I. Bica
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引用次数: 1

Abstract

Data gathering from wireless sensors using unmanned aerial vehicles has been a subject of interest in the recent years. Scientific literature shows that this method has not reached its peak and results are promising, as can be seen from Section 2. Sensors were included in different areas with the sole purpose of optimizing results (traffic management, crop field surveillance and many more). Beside obvious advantages that they bring, they offer also limitations in terms of hardware/software capabilities. For this reason, this paper addresses the need of reducing the transmission time and energy consumption due to the limited capacities of wireless sensors. The most important part of the proposed optimization relies in the dynamic construction of the trajectory that an unmanned aerial vehicle uses for gathering data from wireless sensors. The trajectory will be built based on a file that contains the positions of all sensors in the field. The file would be created in a previous step, when the unmanned aerial vehicle would fly on a predefined pattern and discover sensors on the ground. Based on the locations of the sensors, grouping and optimizations are done to obtain the best trajectory for the given location of sensors. Simulations were made with Network Simulator 2 and results show that the proposed objectives have been reached.
无人机无线传感器网络数据采集优化
近年来,利用无人驾驶飞行器从无线传感器收集数据一直是人们感兴趣的话题。科学文献表明,这种方法尚未达到顶峰,结果是有希望的,从第2节可以看出。传感器被安装在不同的区域,唯一的目的是优化结果(交通管理、农田监控等等)。除了它们带来的明显优势之外,它们在硬件/软件功能方面也有限制。为此,本文针对无线传感器容量有限所带来的减少传输时间和能量消耗的需求进行了研究。所提出的优化方案中最重要的部分依赖于无人机用于从无线传感器收集数据的轨迹的动态构建。轨迹将基于包含现场所有传感器位置的文件建立。该文件将在之前的步骤中创建,当无人驾驶飞行器按照预定义的模式飞行并发现地面上的传感器时。根据传感器的位置,对传感器进行分组和优化,以获得给定位置的最佳轨迹。利用Network Simulator 2进行了仿真,结果表明所提出的目标已经达到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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