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High resolution deconvolution using least-absolute-values minimization (US NDE)

机译:使用最小 - 绝对值最小化(US NDE)的高分辨率去卷积

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A high-resolution deconvolution technique for improving temporal resolution in ultrasonic nondestructive-evaluation signals was investigated. Least-absolute-values (L1 norm) minimization was applied to the deconvolution process for systems whose impulse responses can be modeled as sparsely filled series of spikes. Particular attention was given to the relative performance in the presence of noise of this method as compared to the least-squares (L2 norm) method. There are clear indications that the L1 approach is superior for this type of system. The issue of objectively choosing the damping parameter employed by this technique was also addressed. The method and results from these investigations have been applied to ultrasonic inspection signals from nuclear reactor pressure tubes with good results.
机译:研究了一种用于改善超声波无损评估信号中的时间分辨率的高分辨率去卷积技术。最小 - 绝对值(L1 NOM)最小化应用于脉冲响应可以被建模为稀疏填充的系列尖峰的系统的解卷积过程。与最小二乘(L2范数)方法相比,在该方法的噪声存在下对相对性能的相对性能特别注意。有明显的迹象表明,L1方法对于这种类型的系统优于优异。还解决了客观地选择该技术采用的阻尼参数的问题。本研究的方法和结果已应用于来自核反应堆压力管的超声检查信号,结果良好。

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