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The Flexibility of the Generalized Gamma Distribution in Modeling the Fading Based on Kullback-Leibler and Kolmogorov-Smirnov Criteria

机译:基于Kullback-Leibler和Kolmogorov-Smirnov标准建模衰落中的广义伽马分布的灵活性

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摘要

The precision of Rayleigh distribution, as the simplest fading model in Non-Line-of-Sight (NLOS) channels, is low in high-resolution radars and long-distance communication receivers. Many currently-available statistical models with a higher precision, including Nakagami-m, Weibull and generalized hybrid Gamma models, are used to describe the radar clutter and the reflected signals in communication receivers. Although the mentioned models in NLOS channels have more accurate matching with the actual fading, a variety of models and the lack of a comprehensive model in different fading channels make it difficult to select an appropriate model. In this paper, the generalized Gamma model is analyzed and evaluated to demonstrate that it adapts to other fading models. Moreover, it also matches with long-term fading, as well as combined long and short-term fading models. Using a practical sample, it is stated that the generalized Gamma model is also adaptable to the channels to which none of the other available closed-form models are suitable. The simulations and the real data results, approved by Kullback-Leibler and Kolmogorov-Smirnov criteria, prove the claim.
机译:瑞利分布的精度,作为非视线(NLOS)通道中最简单的衰落模型,在高分辨率雷达和长距离通信接收器中是低的。许多目前可用的统计模型具有更高的精度,包括Nakagami-M,Weibull和广义混合伽玛模型,用于描述通信接收器中的雷达杂波和反射信号。虽然NLOS频道中提到的模型与实际衰落的匹配更准确,但各种模型和不同衰落通道中缺乏综合模型使得难以选择合适的模型。在本文中,分析并评估了广义的伽马模型,证明它适应其他衰落模型。此外,它还与长期褪色,以及组合的长期褪色模型匹配。使用实用的样品,据说广拓伽玛模型也适用于其他可用闭合模型所合适的通道。 kullback-Leibler和Kolmogorov-Smirnov标准批准的模拟和实际数据结果证明了该索赔。

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