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Generalized methods and solvers for noise removal from piecewise constant signals. I. Background theory

机译:从分段常数信号中去除噪声的通用方法和求解器。一,背景理论

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摘要

Removing noise from piecewise constant (PWC) signals is a challenging signal processing problem arising in many practical contexts. For example, in exploration geosciences, noisy drill hole records need to be separated into stratigraphic zones, and in biophysics, jumps between molecular dwell states have to be extracted from noisy fluorescence microscopy signals. Many PWC denoising methods exist, including total variation regularization, mean shift clustering, stepwise jump placement, running medians, convex clustering shrinkage and bilateral filtering; conventional linear signal processing methods are fundamentally unsuited. This paper (part I, the first of two) shows that most of these methods are associated with a special case of a generalized functional, minimized to achieve PWC denoising. The minimizer can be obtained by diverse solver algorithms, including stepwise jump placement, convex programming, finite differences, iterated running medians, least angle regression, regularization path following and coordinate descent. In the second paper, part II, we introduce novel PWC denoising methods, and comparisons between these methods performed on synthetic and real signals, showing that the new understanding of the problem gained in part I leads to new methods that have a useful role to play.
机译:从分段常数(PWC)信号中消除噪声是在许多实际情况下引起的具有挑战性的信号处理问题。例如,在勘探地球科学中,需要将嘈杂的钻孔记录分成地层区域,而在生物物理学中,必须从嘈杂的荧光显微镜信号中提取分子停留状态之间的跳变。存在许多PWC去噪方法,包括总变化正则化,均值漂移聚类,逐步跳跃放置,运行中值,凸聚类收缩和双边滤波。传统上线性信号处理方法根本不适合。本文(第一部分,第二部分的第一部分)表明,这些方法中的大多数都与广义函数的特殊情况相关联,这些情况被最小化以实现PWC去噪。最小化器可以通过各种求解器算法获得,包括逐步跳转放置,凸规划,有限差分,迭代运行中位数,最小角度回归,正则化路径跟随和坐标下降。在第二篇论文的第二部分中,我们介绍了新颖的PWC去噪方法,并对在合成信号和真实信号上进行的这些方法之间的比较进行了比较,表明对第一部分中获得的问题的新理解导致了新方法的发挥作用。

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