论文标题

使用无人机:性能分析和算法设计的三维频谱占用测量

Three-Dimensional Spectrum Occupancy Measurement using UAV: Performance Analysis and Algorithm Design

论文作者

Wei, Zhiqing, Yao, Rubing, Kang, Jie, Chen, Xu, Wu, Huici

论文摘要

Spectrum共享作为一种显着提高第六代移动网络(6G)时代频谱效率的方法,引起了广泛的关注。基于无线电环境图(REM)的低复杂性频谱共享进行了广泛的研究,其中频谱占用度测量(SOM)对于构建REM至关重要。三维(3D)空间中的SOM对于支持频谱共享的越来越重要,因为太空空间的集成网络是6G的巨大动力。在本文中,我们分析了3D SOM的性能,以进一步研究3D SOM的准确性和效率之间的权衡。我们发现3D SOM的误差与许可网络边界表面的面积,离散的立方体数和3D空间边缘的长度有关。此外,考虑到无人机的路径计划,我们设计了一种快速准确的3D SOM算法,该算法利用无人驾驶汽车(UAV)来测量频谱占用率,从而提高了尺寸的效率,从而提高了尺寸的测量效率,以减少无人用的无人机时间和令人满意的性能。本文获得的理论结果揭示了描述3D SOM方法论的基本依赖性,并且所提出的算法对提高3D SOM的效率有益。值得注意的是,本文中的理论结果和算法可能为更多领域提供指南,例如频谱监测,频谱测量,网络测量,计划等。

Spectrum sharing, as an approach to significantly improve spectrum efficiency in the era of 6th generation mobile networks (6G), has attracted extensive attention. Radio Environment Map (REM) based low-complexity spectrum sharing is widely studied where the spectrum occupancy measurement (SOM) is vital to construct REM. The SOM in three-dimensional (3D) space is becoming increasingly essential to support the spectrum sharing with space-air-ground integrated network being a great momentum of 6G. In this paper, we analyze the performance of 3D SOM to further study the tradeoff between accuracy and efficiency in 3D SOM. We discover that the error of 3D SOM is related with the area of the boundary surfaces of licensed networks, the number of discretized cubes, and the length of the edge of 3D space. Moreover, we design a fast and accurate 3D SOM algorithm that utilizes unmanned aerial vehicle (UAV) to measure the spectrum occupancy considering the path planning of UAV, which improves the measurement efficiency by requiring less measurement time and flight time of the UAV for satisfactory performance. The theoretical results obtained in this paper reveal the essential dependencies that describe the 3D SOM methodology, and the proposed algorithm is beneficial to improve the efficiency of 3D SOM. It is noted that the theoretical results and algorithm in this paper may provide a guideline for more areas such as spectrum monitoring, spectrum measurement, network measurement, planning, etc.

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