Integral model of noise-free radio communication lines

S. Dvornikov, A. Pshenichnikov, S. Manaenko, I. Glukhikh
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Abstract

The development of radio equipment, which can be the basis for radio lines, that can counteract various kinds of interference, both natural and artificial, has always been given special attention. In this case, the main way to interfere with such radio links is, as a rule, the expansion of the signal base. However, this method does not take into account the nature of the destructive effects in conditions of limited frequency and energy resources of radio channels. In this connection, the studies focused on the development of functional models of noise-free radio communication lines, taking into account the density of signal energy distribution in a limited state space, are relevant. This paper considers the development of an integrated model of noise-free radio communication lines, which is characterized by the accounting of statistical parameters of the radio channel model. The approaches to the estimation of efficiency of the developed functional model of the radio lines based on the calculation of information transmission reliability are presented. Theoretical solutions were obtained by the methods of statistical radio engineering and the theory of telecommunications; they are generalized for the models of channels with variable parameters in conditions of nonrandom destructive influence. А positive effect of the practical implementation of the developed model is shown on the basis of analytical modeling.
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无噪声无线电通信线路的整体模型
无线电设备可以作为无线电线路的基础,可以抵消各种自然和人为干扰,其发展一直受到特别关注。在这种情况下,干扰这种无线电链路的主要方式通常是扩大信号基础。然而,这种方法没有考虑到在无线电信道的频率和能量资源有限的情况下破坏性影响的性质。在这方面,考虑到有限状态空间中信号能量分布的密度,专注于开发无噪声无线电通信线路的功能模型的研究是相关的。本文考虑开发一种无噪声无线电通信线路的集成模型,其特征是对无线电信道模型的统计参数进行核算。提出了基于信息传输可靠性计算的无线线路功能模型效率估计方法。通过统计无线电工程的方法和电信理论得到了理论解;将它们推广到非随机破坏影响条件下的变参数通道模型。А在分析建模的基础上显示了所开发模型的实际实施的积极效果。
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