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引用次数: 0

摘要

近年来,随着通信技术的不断发展,为保证通信的健康运行,将基站放置在正确的位置变得越来越重要。据认为,随着5G技术的发展,这种情况将变得更加重要。在本研究中,利用三维数字数据在MATLAB中创建了带有地球图和变换窗口的二维地图。测定了超导表面的衍射射线、直射射线和反射射线,并对超导表面进行了射线追迹算法。为可能的发射机位置绘制一个3D覆盖区域。绘制了不同高度的电场图。观察到电场图随地形、距离、射线的衍射和干涉而变化。
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Generation of 3D Coverage Map
With the developing communication technology in recent years, the importance of placing the base stations in the right location has increased in order to ensure a healthy communication. It is thought that this situation will become even more important with 5G technology. In this study, 2D maps with earth maps and transformation windows were created in MATLAB using 3D digital data. The diffracted, direct and reflected rays were determined, and the ray tracing algorithm was run for the superconducting surface. A 3D coverage area is mapped for a possible transmitter position. Electric field graphs are drawn for different heights. It has been observed that the electric field graph changes depending on the landforms, distance, diffraction and interference of the rays.
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