5G spectrum candidates beyond 6 GHz: A simulation of Jakarta environment

Ahmad Salaam Mirfananda, M. Suryanegara
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引用次数: 13

Abstract

Various researches on how to improve the current cellular system have been done to be implemented in future cellular technology, often called 5G. One of the aspects of researches focuses on the frequency spectrum that will be used on the next generation of cellular system. The frequency spectrum became a focus due to the prediction that the current frequency spectrum will not suffice to accommodate the amount of traffic that 5G will handle. The frequency spectrum that is predicted to replace the current frequency spectrum in the future is located beyond 6 GHz with 28 GHz, 38 GHz, and 73 GHz as a few examples of those candidates. Although these spectrums are considered as potential frequency spectrum candidate supporting 5G, site specific planning will become an important focus where the transmission performance will heavily rely on the location where the network is implemented. This paper discusses the computational simulation of a few frequency spectrum candidates when implemented in the environment of Jakarta and considers the propagation losses that will occur during the transmission process. The impact of spectrum candidate implementation to coverage is also simulated and observed. Simulation results show that attenuation due to building penetration is the most significant loss of others. Vegetation attenuation will also have significant impact towards the transmission. Whereas rain and gaseous attenuation will show little significance compared to other propagation losses.
超过6 GHz的5G候选频谱:雅加达环境的模拟
关于如何改进当前蜂窝系统的各种研究已经完成,以便在未来的蜂窝技术(通常称为5G)中实现。研究的一个方面是下一代蜂窝系统所使用的频谱。由于预测目前的频谱不足以容纳5G将处理的通信量,频谱成为焦点。预计未来将取代当前频谱的频谱位于6 GHz以上,其中包括28 GHz, 38 GHz和73 GHz作为候选频谱的几个例子。尽管这些频谱被认为是支持5G的潜在候选频谱,但在传输性能严重依赖网络部署位置的情况下,特定站点规划将成为一个重要焦点。本文讨论了在雅加达环境中实现的几个候选频谱的计算模拟,并考虑了在传输过程中会发生的传播损失。模拟和观察了候选频谱实现对覆盖的影响。仿真结果表明,建筑物穿透引起的衰减是其他损失中最显著的。植被衰减也会对传输产生重大影响。然而,与其他传播损失相比,雨和气体衰减的意义不大。
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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