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Maximum likelihood propagation-delay estimation in unknown correlated noise using antenna arrays: application to Global Navigation Satellite Systems

机译:使用天线阵列的未知相关噪声中的最大似然传播延迟估计:应用于全球导航卫星系统

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摘要

The problem of estimating the propagation-delay of a desired signal in the presence of interferences and multipath propagation is addressed. This paper presents the maximum likelihood (ML) propagation-delay estimator for a signal arriving at a sensor array. The novel characteristic is that the desired signal impinges on the array with a known steering vector. This fact allows to assume an unknown and arbitrary spatially colored noise. The Cramer-Rao bound (CRB) for the problem is derived and numerically compared with the variance of the MLE. The MLE is applied to the Global Navigation Satellite Systems, in order to reduce the serious performance deterioration that the interferences ad the multipath propagation produce. We show that in presence of coherent reflections of the desired signal the presented estimator is no longer the MLE and becomes biased. However, its bias is much lower than that of other conventional estimators.
机译:解决了在存在干扰和多径传播的情况下估计所需信号的传播延迟的问题。本文提出了到达传感器阵列的信号的最大似然(ML)传播延迟估计器。新颖的特征是,所需信号以已知的导向向量撞击阵列。这个事实允许假设一个未知且任意的空间彩色噪声。得出问题的克雷默-拉奥边界(CRB),并与MLE的方差进行数值比较。 MLE被应用于全球导航卫星系统,以减少由于多径传播而产生的干扰所造成的严重性能下降。我们表明,在存在所需信号的相干反射的情况下,提出的估计量不再是MLE,而是有偏差的。但是,其偏差远低于其他常规估算器。

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