Time variant models for satellite channel

M. Jolfaei, D. Kreuer, O. Maly, U. Quernheim, W. Kremer
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引用次数: 5

Abstract

Different methods used to design mathematical models for a satellite channel are considered. These channel models, based on homogeneous Markov chains, are used as a basis for evaluation of OSI layer two protocols. The parameter design of the models is based on measured block error probabilities, obtained by German PTT on the Olympus 20/30-GHz channel. Since the block error rate is one of the most important issues for a satellite channel, the modeling will be based on block-oriented data transfers. The authors compare block error probabilities of Gilbert's (1960) and Fritchman's (1967) models with two generative time variant models. The first is a one-dimensional Markov chain (called time variant model, TV) and the second is a two-layered Markov model (called two layer time variant model, TLTV). Analyses and simulations show that the TLTV model exhibits the best results.<>
卫星信道时变模型
考虑了设计卫星信道数学模型的不同方法。这些基于齐次马尔可夫链的通道模型被用作OSI第二层协议评估的基础。模型的参数设计基于德国PTT在Olympus 20/30 ghz信道上测量的块误差概率。由于块错误率是卫星信道最重要的问题之一,因此建模将基于面向块的数据传输。作者将Gilbert(1960)和Fritchman(1967)模型的块误差概率与两个生成时变模型进行了比较。第一种是一维马尔可夫链(称为时变模型,TV),第二种是双层马尔可夫模型(称为两层时变模型,TLTV)。分析和仿真结果表明,TLTV模型具有最佳的求解效果。
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