Estrada Julio C, Servin Manuel, Quiroga Juan A
Centro de Investigaciones en ptica A. C., Loma del Bosque 115, Col. Lomas del Campestre, 37150, Len Guanajuato, Mexico.
Opt Express. 2011 Mar 14;19(6):5126-33. doi: 10.1364/OE.19.005126.
Phase unwrapping techniques remove the modulus ambiguities of wrapped phase maps. The present work shows a first-order feedback system for phase unwrapping and smoothing. This system is a fast sequential unwrapping system which also allows filtering some noise because in deed it is an Infinite Impulse Response (IIR) low-pass filter. In other words, our system is capable of low-pass filtering the wrapped phase as the unwrapping process proceeds. We demonstrate the temporal stability of this unwrapping feedback system, as well as its low-pass filtering capabilities. Our system even outperforms the most common and used unwrapping methods that we tested, such as the Flynn's method, the Goldstain's method, and the Ghiglia least-squares method (weighted or unweighted). The comparisons with these methods shows that our system filters-out some noise while preserving the dynamic range of the phase-data. Its application areas may cover: optical metrology, synthetic aperture radar systems, magnetic resonance, and those imaging systems where information is obtained as a demodulated wrapped phase map.
相位展开技术消除了包裹相位图的模模糊性。目前的工作展示了一种用于相位展开和平滑的一阶反馈系统。该系统是一个快速顺序展开系统,它还能过滤一些噪声,因为实际上它是一个无限脉冲响应(IIR)低通滤波器。换句话说,我们的系统能够在展开过程中对包裹相位进行低通滤波。我们展示了这种展开反馈系统的时间稳定性及其低通滤波能力。我们的系统甚至优于我们测试过的最常用的展开方法,如弗林方法、戈德斯坦方法和吉利亚最小二乘法(加权或未加权)。与这些方法的比较表明,我们的系统在保留相位数据动态范围的同时滤除了一些噪声。其应用领域可能包括:光学计量、合成孔径雷达系统、磁共振以及那些通过解调包裹相位图获取信息的成像系统。