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首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Bayesian theory for target location in noise with unknown spectral density
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Bayesian theory for target location in noise with unknown spectral density

机译:贝叶斯理论在未知频谱密度的噪声中的目标定位

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摘要

A Bayesian approach adapted to practical detection and location tasks of a target in additive Gaussian noise with unknown spectral density is developed and studied. The relevance of this theory'is first discussed in comparison with a maximum a posteriori solution that has been recently developed [J. Opt. Soc. Am. A 15, 61 (1998)]. The analysis is first performed without considering a particular prior for the spectral density of the noise. General results of the Bayesian approach are thus provided as well as properties of its first-order development, which corresponds to the so-called nonlinear joint-transform correlation frequently used in optical correlators. It is demonstrated that the kernel of the nonlinear filtering is an increasing function of the sum of the spectral density of the reference object and of the input image. Furthermore, it is shown that a powerlaw mathematical form of the nonlinear filtering is directly related to assumptions on the asymptotic behavior of the prior density probabilities of the unkknown spectral density of the noise. These properties constitute new theoretical results in the context of statistical theory concerning the use of nonlinearities in optical correlators.
机译:开发和研究了一种贝叶斯方法,该方法适合于在未知高光谱密度的加性高斯噪声中对目标进行实际检测和定位任务。首先与最近开发的最大后验解比较来讨论该理论的相关性[J.选择。 Soc。上午。 A 15,61(1998)]。首先执行分析时无需考虑噪声频谱密度的特定先验。因此,提供了贝叶斯方法的一般结果及其一阶展开的性质,其对应于光学相关器中经常使用的所谓的非线性联合变换相关。证明了非线性滤波的核是参考物体和输入图像的光谱密度之和的增加函数。此外,还表明,非线性滤波的幂律数学形式与噪声的未知频谱密度的先验密度概率的渐近行为的假设直接相关。这些特性构成了统计理论中有关光学相关器中非线性使用的新理论结果。

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