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Time-frequency channel modeling and estimation of multi-carrier spread spectrum communication systems

机译:多载波扩频通信系统的时频信道建模与估计

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摘要

In wireless communications, the channel is typically modeled as a random, linear, time-varying system that spreads the transmitted signal in both time and frequency due to multi-path propagation and Doppler effects. Estimated channel parameters allow system designers to develop coherent receivers that increase the system performance. In this paper, we show how time-frequency analysis can be used to model and estimate the time-varying channel of a multi-carrier spread spectrum (MCSS) system using a complex quadratic sequence as the spreading code. We will show that for this spreading code, the effects of time delays and Doppler frequency shifts, caused by the mobility of environment objects, can be combined and represented effectively as time shifts. The discrete evolutionary transform (DET), as a time-frequency analysis method, enables us to estimate the effective time shifts via a spreading function and to use them to equalize the channel. Using the effective time shifts, the time-varying channel can be represented simply as linear-time invariant system by embedding the Doppler shifts that characterize the time-varying channel into effective time shifts. The channel parameters are used to estimate the data bit sent. To illustrate the performance of the proposed method we perform several simulations with different levels of channel noise, jammer interference, and Doppler frequency shifts.
机译:在无线通信中,通常将信道建模为随机的,线性的,时变的系统,该系统由于多径传播和多普勒效应而在时间和频率上扩展了所传输的信号。估计的信道参数使系统设计人员能够开发相干的接收机,从而提高系统性能。在本文中,我们展示了如何使用时频分析来建模和估计使用复杂的二次序列作为扩展码的多载波扩展频谱(MCSS)系统的时变信道。我们将证明,对于这种扩展码,由环境物体的移动性引起的时延和多普勒频移的影响可以组合起来并有效地表示为时移。离散进化变换(DET)作为时频分析方法,使我们能够通过扩频函数估计有效时移,并使用它们来均衡信道。使用有效时移,可以通过将表征时变信道的多普勒频移嵌入有效时移中,将时变信道简单地表示为线性时不变系统。通道参数用于估计发送的数据位。为了说明所提出方法的性能,我们执行了几种不同级别的信道噪声,干扰干扰和多普勒频移仿真。

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