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Minimum variance unbiased and moment estimators of carrier frequency offset in multi-carrier systems

机译:多载波系统中载波频率偏移的最小方差无偏和矩估计

摘要

A class of non data-aided cyclic based robust estimators for frequency offset estimation of multi-carrier systems is disclosed. The use of sufficient statistics provides a minimum variance unbiased (MVU) estimate of the frequency offset under complete knowledge of timing offset error. The Neyman-Fisher factorization theorem and Rao-Blackwell-Lehmann-Scheffe theorem are used to identify the sufficient statistic and appropriate mapping functions. It is shown that there is but one function of the sufficient statistics which results in the minimum variance estimate among the possible class of cyclic-based estimators. Also, a moment estimator of frequency offset is provided to obtain a consistent estimate of carrier offset under uncertain symbol timing error. The moment estimator does not rely on any probabilistic assumptions. Thus, its performance is insensitive to the distribution of the additive noise. A unified structure characterizing both the MVU and moment estimators, as well as a maximum likelihood estimator of a related, copending application is disclosed.
机译:公开了用于多载波系统的频率偏移估计的一类非数据辅助的基于循环的鲁棒估计器。在完全了解时序偏移误差的情况下,使用足够的统计数据可提供频率偏移的最小方差无偏(MVU)估计。 Neyman-Fisher分解定理和Rao-Blackwell-Lehmann-Scheffe定理用于识别足够的统计量和适当的映射函数。结果表明,足够的统计量只有一个功能,它导致可能的基于循环的估计量类别中的最小方差估计。而且,提供了频率偏移的矩估计器,以在不确定的符号定时误差下获得载波偏移的一致估计。矩估计器不依赖于任何概率假设。因此,其性能对加性噪声的分布不敏感。公开了表征MVU和矩估计器以及相关的共同未决申请的最大似然估计器两者的统一结构。

著录项

  • 公开/公告号US7203252B2

    专利类型

  • 公开/公告日2007-04-10

    原文格式PDF

  • 申请/专利权人 NAVID LASHKARIAN;

    申请/专利号US20050195219

  • 发明设计人 NAVID LASHKARIAN;

    申请日2005-08-02

  • 分类号H04L27/00;H04L27/06;H04L27/28;

  • 国家 US

  • 入库时间 2022-08-21 21:00:09

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