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Blind Estimation of Multi-Path and Multi-User Spread Spectrum Channels and Jammer Excision via the Evolutionary Spectral Theory

机译:进化谱理论盲估计多径和多用户扩频信道及干扰干扰

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摘要

Despite the significant advantages of direct sequence spreadspectrum communications, whenever the number of users increases orthe received signal is corrupted by an intentional jammer signal,it is necessary to model and estimate the channel effects in orderto equalize the received signal, as well as to excise the jammingsignals from it. Due to multi-path and Doppler effects in thetransmission channels, they are modeled as random, time-varyingsystems. Considering a wide sense stationary channel during thetransmission of a number of bits, a linear time-varying modelcharacterized by a random number of paths, each beingcharacterized by a delay, an attenuation factor and a Dopplerfrequency shift, is shown to be an appropriate channel model. Itis shown that the estimation of the parameters of such models ispossible by means of the spreading function, related to thetime-varying frequency response of the system and the associatedevolutionary kernels. Applying the time-frequency orfrequency-frequency discrete evolutionary transforms, we show thata blind estimation procedure is possible by computing thespreading function from the discrete evolutionary transform ofthe received signal. The estimation also requires the synchronizedpseudo-noise sequence for either of the users we are interestedin. The estimation procedure requires to adaptively implementingthe discrete evolutionary transform to estimate the spreadingfunction and determine the channel parameters. Once the number ofpaths, delays, Doppler frequencies and attenuations characterizingthe channel are found, a decision parameter can be obtained todetermine the transmitted bit. We will show also that ourestimation approach supports multiuser communication applicationssuch as uplink and downlink in wireless communicationtransmissions. In the case of an intentional jamming, common inmilitary applications, we consider a receiver based onnon-stationary Wiener masking that excises such jammer as well asinterference from other users. Both the mask and the optimalestimator are obtained from the discrete evolutionarytransformation. The estimated parameters from the computedspreading function, corresponding to the closest to the line ofsight signal path, provide an efficient detection scheme. Ourprocedures are illustrated with simulations, that display thebit-error rate for different levels of channel noise and jammersignals.
机译:尽管直接序列扩频通信具有显着的优势,但每当用户数量增加或接收信号被人为干扰信号破坏时,都必须对信道效应进行建模和估计,以使接收信号均衡,并切除接收信号。来自它的干扰信号。由于传输信道中的多径和多普勒效应,它们被建模为随机的时变系统。考虑到在传输多个比特期间的广义静止信道,以随机数的路径为特征的线性时变模型被示为合适的信道模型,该路径的时变模型以随机数,每个路径以延迟,衰减因子和多普勒频移为特征。结果表明,利用扩展函数可以对这类模型的参数进行估计,该函数与系统及其相关进化核的时变频率响应有关。应用时间-频率或频率-频率离散进化变换,我们表明通过从接收信号的离散进化变换计算扩展函数,可以实现盲估计程序。估算还需要我们感兴趣的任何一个用户的同步伪噪声序列。估计过程需要自适应地实现离散进化变换,以估计扩频函数并确定信道参数。一旦找到表征信道的路径,延迟,多普勒频率和衰减的数量,就可以获取决策参数以确定传输的比特。我们还将展示,我们的估计方法支持无线通信传输中的多用户通信应用程序,例如上行链路和下行链路。在有意干扰的情况下,常见的非军事应用,我们考虑一种基于非平稳维纳掩蔽的接收器,它可以消除此类干扰以及其他用户的干扰。掩模和最优估计器都是从离散进化变换中获得的。来自计算的扩展函数的估计参数对应于最接近视线信号路径的参数,提供了一种有效的检测方案。我们的过程通过仿真进行了说明,这些仿真显示了不同级别的信道噪声和干扰信号的误码率。

著录项

  • 作者

    Alshehri Abdullah Ali;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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