热带地区(马来西亚)地面链路26千兆赫的雨水衰减案例研究

Kesavan Ulaganathen, A. Tharek, R. Islam, K. Abdullah
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引用次数: 6

摘要

毫米波(mm wave)是当今新兴无线移动蜂窝网络、无线局域网、个人局域网和车载通信的突破性前沿技术。在不久的将来,毫米波产品、系统、理论和设备将结合在一起,提供比目前现有的蜂窝和WiFi网络快数千倍的移动数据速率,例如从3G时代到不久的将来的5G移动通信。然而,对于热带国家,数据链路的可靠性在下雨时受到影响。本文利用热带地区陆地微波链路点对点的测量和预报方法,对广泛应用于本地多点分布业务部署的26ghz雨衰减进行了研究。本文对五种不同的折减因子模型进行了讨论和比较。折减因子的实质是将点雨率减小为路径平均雨率,或减小均匀点雨填充的实际路径长度。研究人员提出了几个模型来解释降雨量的水平变化。而在ITU-R模式中,用于热带地区降雨衰减预测的主要是订正Moupfouma模式、订正Silva Mello模式和Lin模式。本文考虑了新引入的Abdulrahman模型。这些研究的目的是通过比较较高工作频率(例如属于Ka波段类别的26 GHz)的实际测量数据,确定最适合马来西亚热带地区的降雨衰减预测模型。这项研究将为研究人员提供有用的信息,通过理解和充分考虑热带地区26 GHz地面链路的雨衰减预测。分析结果表明,Lin模型与26 GHz的测量值预测接近,与其他模型相比误差较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Case study of rain attenuation at 26 GHz in tropical region (Malaysia) for terrestrial link
Millimeter wave (mm Wave) is today's breakthrough frontier for emerging wireless mobile cellular networks, wireless local area networks, personal area networks, and vehicular communications. In the near future, mm Wave products, systems, theories, and devices will come together to deliver mobile data rates thousands of times faster than today's existing cellular and WiFi networks for an example from the era of 3G towards 5G mobile communication near future. However for Tropical countries the data link reliability is effected during rain. This paper presents studies on rain attenuation at 26 GHz, which is widely used for local multipoint distribution service deployment by using the measured and prediction methods for terrestrial microwave links point to point in tropical regions. In this paper, discussion and comparison of five different reduction factor models have been presented. The essence of reduction factor is either to reduce the point rain rate to the path averaged rain rate, or to reduce the actual path length filled with the uniform point rainfall. Several models have been proposed by researchers to account for the horizontal variation of rain fall. However of ITU-R model, revised Moupfouma model, revised Silva Mello model and Lin model mostly been used for rain attenuation predictions in tropical regions. The Abdulrahman model is newly introduced has been take into consideration in this studies. The objective of these studies to identify most suitable rain attenuation prediction model for the Malaysian tropical region by comparing with actual measurement data at higher operating frequencies, such as 26 GHz which falls under Ka Band category. This study will provide useful information for researchers by understanding and good considerations in rain attenuation predictions for a terrestrial link operating frequency at 26 GHz in a tropical region. At the end of the analysis, it was found the Lin models predicts closely with the measurement value at 26 GHz with little error compare to other models.
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