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Maximum-likelihood estimators for the time and frequency differences of arrival of cyclostationary digital communications signals

机译:循环平稳数字通信信号到达的时间和频率差的最大似然估计器

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摘要

Advanced techniques have been employed for decades in the location of emitted communications signals. The use of cyclostationary maximum-likelihood estimators (MLE) applied to time different of arrival (TDOA) and frequency difference of arrival (FDOA) techniques for target emitter location is a newly developed approach. This dissertation provides an introduction to traditional TDOA and FDOA methods and the underlying cyclostationary theory of pseudo-random signals. A survey of current cyclostationary TDOA and FDOA methods, the description of new maximum likelihood estimators (MLEs) and descriptions of Monte Carlo simulations follow this. By comparing performance results to those of the Complex Ambiguity Function (CAF), it is shown that the new MLE(s) outperform the CAF in nearly all cases. Also, by comparison to the Cramer-Rao lower bound, the new MLE(s) provide a hint of the ultimate power of cyclostationary techniques over stationary techniques, exceeding this stationary theoretical lower bound on performance in many cases. Finally, the new MLE(s) perform comparably in the measurement of TDOA to those cyclostationary algorithms previously derived, when adjustments are made for the different signal environments used in the heritage work.
机译:在发射的通信信号的位置上已经采用了数十年的先进技术。将循环平稳最大似然估计器(MLE)应用于目标发射器位置的到达时间差(TDOA)和到达频率差(FDOA)技术是一种新开发的方法。本文介绍了传统的TDOA和FDOA方法以及伪随机信号的循环平稳理论。紧随其后的是对当前循环平稳TDOA和FDOA方法的调查,新的最大似然估计器(MLE)的描述以及蒙特卡洛模拟的描述。通过将性能结果与复杂歧义函数(CAF)的性能进行比较,可以看出,新的MLE在几乎所有情况下都优于CAF。而且,与Cramer-Rao下限相比,新的MLE提供了循环平稳技术相对于固定技术的最终威力的暗示,在许多情况下超出了此固定理论上的性能下限。最后,当针对遗产工作中使用的不同信号环境进行调整时,新的MLE在测量TDOA方面的性能与先前推导的那些循环平稳算法相当。

著录项

  • 作者

    Streight David A.;

  • 作者单位
  • 年度 1999
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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