使用能量受限的无人机进行物联网设备的数据收集

Yuchen Li, W. Liang, Wenzheng Xu, X. Jia
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引用次数: 12

摘要

在本文中,我们研究了无线传感器网络中物联网设备的传感数据收集,使用能量受限的无人机(UAV),其中传感数据存储在物联网设备中,而物联网设备可能在或不在彼此的传输范围内。我们提出了两个新的数据收集问题,利用无人机从物联网设备中全部或部分收集数据,通过为无人机寻找一个封闭的行程,包括悬停位置和在每个悬停位置的停留时间,从而使收集的累积数据量最大化,这取决于无人机的能量容量,其中无人机在悬停和从一个悬停位置飞行到另一个悬停位置时消耗能量。为此,我们首先提出了一种新的数据收集框架,使无人机能够同时收集来自多个物联网设备的传感数据,如果物联网设备在无人机的悬停覆盖范围内。然后,我们提出了两个数据收集最大化问题,并表明这两个问题都是np困难的。我们为这些问题设计了有效的近似算法和启发式算法。最后,我们通过实验模拟来评估所提出算法的性能。实验结果表明,该算法是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Data Collection of IoT Devices Using an Energy-Constrained UAV
In this paper, we study sensing data collection from IoT devices in a wireless sensor network, using an energy-constrained Unmanned Aerial Vehicle (UAV), where the sensory data is stored in IoT devices while the IoT devices may or may not be within the transmission range of each other. We formulate two novel data collection problems to fully or partially collect data from IoT devices using the UAV, by finding a closed tour for the UAV that includes hovering locations and the sojourn duration at each of the hovering locations such that the accumulative volume of data collected is maximized, subject to the energy capacity on the UAV, where the UAV consumes its energy on both hovering and flying from one hovering location to another hovering location. To this end, we first propose a novel data collection framework that enables the UAV to collect the sensory data from multiple IoT devices simultaneously if the IoT devices are within the hovering coverage range of the UAV. We then formulate two data collection maximization problems, and show that both of the problems are NP-hard. We instead devise efficient approximation and heuristic algorithms for the problems. We finally evaluate the performance of the proposed algorithms through experimental simulations. Experimental results demonstrated that the proposed algorithms are promising.
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