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Jamming effects on M-ary coherent and binary noncoherent digital receivers using random jammer models

机译:使用随机干扰模型对Mary相干和二进制非相干数字接收机的干扰影响

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摘要

The purpose of this work is to analyze and evaluate the effect of jamming waveforms on both coherent and noncoherent digital communications receivers. Specifically,, random processes are utilized as jamming models in which it is assumed that the jamming waveforms have been produced by a shaping filter driven by white Gaussian noise. Such jamming waveforms are then assumed to be present at the input of known receiver structures (in addition to the signals and channel noise normally present), and optimum jamming waveform spectra are determined for different receiver schemes and modulation techniques. Graphical results based on numerical analyses are presented in order to demonstrate the effect of different jamming strategies on receiver performance. In order to quantify receiver performance, bit error probabilities are determined for binary modulation systems and symbol error probabilities are determined for M-ary modulation systems. In each case, the error probabilities are functions of signal-to-noise ratio (SNR) and jammer-to-signal ratio(JSR). Results show that it is generally possible to significantly degrade the performance of binary as well as M-ary modulation communication receivers by introducing suitably chosen jamming waveforms
机译:这项工作的目的是分析和评估干扰波形对相干和非相干数字通信接收机的影响。具体地,利用随机过程作为干扰模型,其中假设干扰波形已经由白高斯噪声驱动的整形滤波器产生。然后假定这种干扰波形出现在已知接收器结构的输入端(除了通常存在的信号和信道噪声之外),并针对不同的接收器方案和调制技术确定最佳的干扰波形频谱。提出了基于数值分析的图形结果,以证明不同的干扰策略对接收机性能的影响。为了量化接收机性能,对于二进制调制系统确定误码率概率,对于M进制调制系统确定误码率概率。在每种情况下,错误概率都是信噪比(SNR)和干扰信号比(JSR)的函数。结果表明,通过引入适当选择的干扰波形,通常有可能显着降低二进制和M元调制通信接收机的性能。

著录项

  • 作者

    Munoz Luis A.;

  • 作者单位
  • 年度 1985
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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