摘要
为解决相位去包裹对光力学图像处理的影响问题,本文将一种直接从数字编码傅立叶变换或相移条纹图中逐相素提取相位梯度的方法应用于光力学图像信息识别中。该方法是一个广泛应用于光纤传感器中的微分正交乘法器(DCM)的正、余弦相位检波技术。这一技术算法简单,不需计算反正切,不受相位去包裹方法标准的限制,非常适于应用在以相位梯度作为最终所需识别的信息的光力学图像处理中。本文以载波等达因条纹图应力场计算及四幅图相移等达因法求板的接触应力为例,对该技术在光力学图像信息识别中的应用进行了论证。
In this paper, an approach of computing pixel-by-pixel gradients of optical directly from digitally encoded Fourier-transform or phase-stepped fringe patterns is used in the information recognition of Photodynamic fringe pattern. This approach can be classified as a sine-cosine demodulation technique that finds its roots in the differential cross-multiplier phase-demodulation technique commonly used by the optical fiber sensor community. This technique is algorithmically simple, does not rely on a computation of the arctangent, and therefore is not subject to some of the limitations of the standard phase-unwrapping methodologies. The validity of the proposed phasegradient technique is demonstrated by the calculation of the stress field of three point bending model using Isodyne method combined with Fourier transform fringe interpretation and the calculation of the contact stress of a plate by using phase-stepping Isodyne method of four maps.
出处
《实验力学》
CSCD
北大核心
2006年第6期769-774,共6页
Journal of Experimental Mechanics
关键词
正交乘法器(DCM)
相位去包裹
相位梯度
相移
傅立叶变换
differential cross-multiplier (DCM)
phase-unwrapping
phase-gradient
phase-stepping
Fourier-transform