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STABILIZED NONLINEAR REGRESSION FOR INTERFEROGRAM ANALYSIS

机译:用于干涉图分析的稳定非线性回归

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摘要

A simple but accurate regression method for reducing the conventional single-frame interferograms that primarily arise in flow and heat-transfer measurements is proposed and tested. Phase extraction from the nonlinear interferogram intensity model becomes an ill-posed nonuniqueness problem. Unlike previous regression techniques, the method is based on iterative independent estimation of the individual terms appearing in the model to resolve this problem. Testing demonstrates stable convergence under a wide range of fringe numbers and noise levels. In comparison with the Fourier transform method the regression method provides enhanced accuracy, especially for cases involving few fringes, opaque boundaries, and phase discontinuities. It also allows direct gradient calculation. These features are very attractive for flow measurements despite its slow processing time. [References: 13]
机译:提出并测试了一种用于减少主要在流量和热传递测量中出现的常规单帧干涉图的简单但准确的回归方法。从非线性干涉图强度模型提取相位成为不适定的非唯一性问题。与以前的回归技术不同,该方法基于对出现在模型中的单个术语的迭代独立估计,以解决此问题。测试表明,在各种条纹数和噪声水平下均具有稳定的收敛性。与傅立叶变换方法相比,回归方法提供了更高的准确性,特别是对于涉及很少条纹,不透明边界和相位不连续的情况。它还允许直接梯度计算。尽管处理时间很慢,但这些功能对于流量测量非常有吸引力。 [参考:13]

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