A New Relationship between the Nakagami “m-coefficient” and the S4 Index for more accurately Describing the Fading Distribution of Ionospheric Scintillation

Hong‐Bo Zhang, Fei Wang, Dong Sheng, Yu-mei Liu
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Abstract

The radio system designers have to be aware of the statistical characteristics of the instantaneous variation of signal amplitudes in order to develop possible mitigation strategies. The applicable scopes of the Nakagami distribution and the Rayleigh distribution are analyzed based on the observations of the amplitude scintillations recorded in the low-latitude of China. It’ concluded that the scintillation amplitude is more likely to obey the Rayleigh distribution when the S4 index is greater than 0.7. By the variation of “m-coefficient”, the Nakagami distribution could represent the Rayleigh distribution. Therefore, a new relationship between the S4 index and the “m-coefficient” of the Nakagami distribution is put forward, which can much better describe the fading distribution of amplitude scintillations in the whole range of S4 and also is simple enough for the engineering application.
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更准确描述电离层闪烁衰减分布的Nakagami“m系数”与S4指数的新关系
无线电系统设计人员必须了解信号幅度瞬时变化的统计特征,以便制定可能的缓解策略。根据中国低纬度地区的振幅闪烁观测资料,分析了中川分布和瑞利分布的适用范围。当S4指数大于0.7时,闪烁幅值更可能服从瑞利分布。通过“m系数”的变化,Nakagami分布可以代表瑞利分布。因此,提出了S4指数与Nakagami分布的“m系数”之间的一种新的关系,可以更好地描述整个S4范围内振幅闪烁的衰落分布,并且对于工程应用来说也足够简单。
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