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A novel method for predicting site dependent specific rain attenuation of millimeter radio waves

机译:一种预测毫米波无线电波随位置变化的特定雨衰的新方法

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There is a need for validation and improvement of propagation prediction methods for the safe design and operation of millimeter radio communication systems. At this frequency range, propagation related degradation is primarily caused by rainfall. Our goal is an improved method for predicting specific attenuation due to rainfall. A general method for establishing the relationship between rainfall rate and specific attenuation is developed. Drop size distributions (DSDs) measured by a Joss distrometer are analyzed, and three climate classification parameters, rain rate, DSD median, and DSD mode, are used in the development of the new methods. These parameters are investigated as candidate classes to categorize drop size distributions. Categories of the classes are then established to improve the long-term DSD estimate. The typical long-term DSD is used to derive new prediction methods that are compared with observed attenuation. The influence of wind on the rainfall measurements is studied, and a corresponding correction is suggested, reducing the prediction error significantly. Testing of the three new methods using measurements at 40 and 60 GHz shows noticeable improvement over the method recommended by the International Telecommunication Union (ITU) using measurements at 60 GHz at deep attenuation.
机译:对于毫米波无线电通信系统的安全设计和操作,需要验证和改进传播预测方法。在此频率范围内,与传播有关的退化主要是由降雨引起的。我们的目标是一种改进的方法,用于预测降雨引起的特定衰减。建立了建立降雨率与比衰减之间关系的通用方法。分析了由Joss分光计测得的液滴尺寸分布(DSD),并在开发新方法时使用了三个气候分类参数,降雨率,DSD中值和DSD模式。将这些参数作为候选类进行研究,以对墨滴大小分布进行分类。然后建立类的类别,以改善长期DSD估计。典型的长期DSD用于得出新的预测方法,并与观察到的衰减进行比较。研究了风对降雨测量的影响,并提出了相应的校正措施,从而大大减少了预测误差。使用40 GHz和60 GHz的测量值对这三种新方法的测试表明,与国际电信联盟(ITU)推荐的使用60 GHz深度衰减的测量方法相比,该方法有了明显的改进。

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