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首页> 外文期刊>IEEE Journal of Oceanic Engineering >Fast maximum likelihood estimation of signal parameters using the shape of the compressed likelihood function
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Fast maximum likelihood estimation of signal parameters using the shape of the compressed likelihood function

机译:使用压缩似然函数的形状快速估计信号参数的最大似然

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摘要

A computationally efficient fast maximum-likelihood (FML) estimation scheme, which makes use of the shape of the surface of the compressed likelihood function (CLF), is proposed. The scheme uses only multiple one-dimensional searches oriented along appropriate ridges on the surface of the CLF. Simulations indicate that the performances of the proposed estimators match those of the corresponding maximum-likelihood estimators with very high probability. The approach is demonstrated by applying it to two different problems. The first problem involves the estimation of time of arrival and Doppler compression of a wideband hyperbolic frequency modulated (HFM) active sonar signal buried in reverberation. The second problem deals with estimating the frequencies of sinusoids. A threshold analysis of the proposed scheme is carried out to predict the signal-to-noise ratio (SNR) at which large estimation errors begin to occur, i.e., the threshold SNR, and its computational complexity is discussed.
机译:提出了一种计算效率高的快速最大似然(FML)估计方案,该方案利用了压缩似然函数(CLF)的表面形状。该方案仅使用沿着CLF表面适当脊定向的多个一维搜索。仿真表明,所提出的估计量的性能与相应的最大似然估计量的性能非常匹配。通过将其应用于两个不同的问题来证明该方法。第一个问题涉及埋藏在混响中的宽带双曲线调频(HFM)有源声纳信号的到达时间估计和多普勒压缩。第二个问题涉及估计正弦波的频率。对提出的方案进行阈值分析以预测开始出现大估计误差的信噪比(SNR),即阈值SNR,并讨论其计算复杂度。

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