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1.
基于Mexican hat小波变换的三维轮廓术   总被引:4,自引:1,他引:3  
为了提高小波变换轮廓术中小波的空域局部化能力, 提出了一种基于Mexican hat小波变换的条纹图处理方法.基于希尔伯特变换得到条纹对应的解析信号, 用Mexican hat小波计算解析信号的连续小波变换, 从小波变换的脊上提取相位信息, 恢复物体高度信息.模拟结果表明, Mexican hat小波变换法在相位快变或突变的区域有更高的相位提取精度, 测量误差可减小0.1~0.5 rad.以人脸石膏像为例, 进行了实验测量.实验结果表明, 在高度不连续或变化剧烈的区域, Mexican hat小波变换法较Morlet小波方法误差传播更小, 精度更高.  相似文献   

2.
熊六东  贾书海  杜艳芬 《光子学报》2014,39(9):1678-1681
提出了一种新的应用希尔伯特变换解调干涉条纹相位的算法,可以从单幅干涉条纹图中解调出全场相位分布.在实际应用中,常借助傅里叶变换实现希尔伯特变换算法,但是会忽略负频率成分,造成相位信息的丢失.对于相位分布非单调变化的干涉条纹,提出了一种判断函数,用来计算相位信息零频率点的分布.利用相位的零频率点分布构造了一个二元模板,使用该模板对本文提出的两次希尔伯特变换法产生的包裹相位图进行修正.对修正后的包裹相位图进行解包裹处理,可以得到连续的全场相位分布.对该方法用计算机模拟进行了验证.  相似文献   

3.
提出了一种新的应用希尔伯特变换解调干涉条纹相位的算法,可以从单幅干涉条纹图中解调出全场相位分布.在实际应用中,常借助傅里叶变换实现希尔伯特变换算法,但是会忽略负频率成分,造成相位信息的丢失.对于相位分布非单调变化的干涉条纹,提出了一种判断函数,用来计算相位信息零频率点的分布.利用相位的零频率点分布构造了一个二元模板,使用该模板对本文提出的两次希尔伯特变换法产生的包裹相位图进行修正.对修正后的包裹相位图进行解包裹处理,可以得到连续的全场相位分布.对该方法用计算机模拟进行了验证.  相似文献   

4.
徐锋  胡松  周绍林  徐文祥 《光学学报》2012,32(2):212001-128
针对光刻对准中双光栅产生的具有多频率的干涉条纹,提出了一种基于二维解析小波变换进行条纹分析的方法。该方法首先通过二维小波变换的多尺度对条纹的多频率进行分析,并通过解析小波基函数将条纹的幅度与相位进行分离,最终通过二维小波脊方法提取出与偏移量相关的相位。在相位提取的同时通过二维小波脊所处点的角度分布来移除封闭条纹处理中常见的相位符号不确定性。数值模拟与实验验证了该方法的可行性并与传统的基于频域的相位分析方法进行了对比分析。结果表明,该方法能在获得所需相位信息的同时较好地滤除掉由光路抖动引起的噪声,具有很强的适应性。  相似文献   

5.
提出了两种在相位轮廓术中使用离散小波变换提取条纹相位的方法:单次分解法和多次分解法.前者用多分辨率分析的多孔算法计算变形条纹解析信号的离散小波变换,寻找每一位置的小波系数在尺度方向上的模极大值点,通过提取该点的相位就可以得到原条纹的相化值;后者是在前者的基础上,通过插值改变条纹信号的抽样率,再次进行多分辨率分析,得到冗余的小波系数,提取条纹相位.单次分解法适合处理正弦载频条纹图,多次分解法抗噪性好,可以处理带有高次谐波的准止弦载频条纹图.相对于使用连续小波变换的方法.这两种方法较适合处理离散信号,对于512 pixel × 512 pixel的条纹图计算速度分别提高90%和50%.计算机模拟和实验验证了方法的有效性.  相似文献   

6.
提出了一种基于二维连续小波变换的电子散斑干涉(ESPI)条纹图相位提取方法。通过检测二维小波脊确定条纹相位,并引入条纹频率作为向导,有效地避免了相位解调过程中的符号奇异性问题,从而使该算法既能处理开条纹图也能处理闭条纹图,且对散斑噪声具有较强的抑制能力。数值模拟和实验结果表明,该方法在抑制散斑噪声的同时能够有效地提取出条纹相位,对开条纹图和闭条纹图都能处理。  相似文献   

7.
为了提高小波变换三维面形测量技术中相位信息的解调速度,依据不同的并行计算原理,提出两种基于并行一维连续小波变换的光学条纹图快速解调方法。利用多核CPU运算平台进行了计算机模拟和实验,结果表明并行一维连续小波变换光学条纹图相位解调方法相比于串行一维连续小波变换光学条纹图相位解调方法,在精度不变的同时计算速度显著提高:对850pixel×1000pixel大小实测条纹图像解调速度提高了7.5倍。并行一维连续小波变换相位解调方法为小波变换三维面形测量技术在实时/瞬态过程三维面形测量中的应用奠定了基础。  相似文献   

8.
小波变换轮廓术在双频光栅条纹中的应用   总被引:2,自引:2,他引:0  
翁嘉文  钟金钢 《光学学报》2005,25(5):03-608
为了解决非连续物体三维面形测量中所存在的非连续相位解包问题,采用计算机生成的两频率之比为一无理数的电子光栅作为空间载频光栅条纹投影到待测物体表面。另外结合伽博小波变换分析的相位解调原理,在一幅变形双频光栅图像中分析得到两个频率各自所对应的包络相位分布,并且应用钟金钢等所提出的双频条纹查表法进行解包得到确定的调制相位分布。提出的双频光栅-小波变换-查表相位解包法很好地解决了傅里叶变换轮廓术,以及连续相位解包法在非连续物体三维面形测量中所存在的问题。给出了详细完整的理论推导过程、计算机模拟以及实验验证,证实了该方法的可行性。  相似文献   

9.
基于相位展开的三维流场干涉层析术   总被引:5,自引:1,他引:4  
姚卫  贺安之 《光学学报》1998,18(11):562-1566
提出用傅里叶变换进行干涉图相位展开(PhaseUnwrapping)的办法直接恢复变形波面,从而可以提取轴向任意截在上的投影数据,实现真正意义上的三维层析,模拟温度场实验证明基于相位展开的投影数据提取方法能够更好的完成层析计算。  相似文献   

10.
自参考光谱相干法的小波变换相位重建   总被引:1,自引:0,他引:1       下载免费PDF全文
将小波变换法引入光谱相位相干电场重建法的相位重建,从光谱干涉条纹的小波变换中直接 读取条纹相位,消除了传统傅里叶方法滤波过程中产生的相位噪声. 这种方法将有利于超宽 带、单周期超短脉冲的产生,更适用于超短脉冲的评价. 关键词: 超短脉冲 相位重建 小波变换  相似文献   

11.
A novel method based on continuous wavelet transform (CWT) and guidance of phase derivative is developed to measure the phase of a single fringe pattern which contains closed fringes. Wrapped phase values are retrieved by ridge extraction algorithms based on CWT which has the capability of better noise reduction and thus increases the resolution of measurement significantly. To further reduce the noise, the scales detected by maximum ridge algorithm are filtered iteratively before retrieval of wrapped phase. The proposed method also identifies any ambiguous point in a non-monotonous fringe pattern by directly tracking an inflexion point from an unwrapped phase map without the use of a carrier. The algorithm developed is validated by computer simulation and experimental results. Based on micro interferometry the experimental results for both static and dynamic deformations of a micro structure demonstrate that the proposed method is an effective tool for the analysis of closed fringe patterns and subsequent deformation measurement. However, the proposed technique is limited to measurement of surface which is relatively smooth compared to the mean wavelength of the light source. In addition, prior knowledge of the sign of surface slope is required in cases where a spatial carrier is not available or adaptable.  相似文献   

12.
Three-dimensional (3D) imaging continues to attract much research interest for its wide applications. In 3D shape measurement, the phase carries information about the object. However, phase mapping is ambiguous as the extracted phase is returned in a form that suffers from 2π phase jumps. In this case, the phase data must be unwrapped to be fit for use. Furthermore, sometimes the presence of noise in the measured data, in which many singular points (SPs) are found, makes general phase unwrapping algorithms fail to produce accurate unwrapped results. For this reason, we propose a new phase unwrapping method for dynamic 3D shape measurement. The new algorithm is based on compensating the singularity of discontinuity sources. It uses direct compensators for adjoining SP pairs and uses rotational compensators for other SP pairs. The proposed algorithm has been evaluated and compared with past phase unwrapping methods. Results show that the proposed method gives satisfactory unwrapped results with a low computation time.  相似文献   

13.
Unwrapping is an important step for precise phase measurement in an interferometric technique. Due to the effects of noises and speckles, an accurate unwrapping has been quite difficult. To address this issue, a new phase unwrapping method is proposed. The new method uses the wrapped phase statistics together with the limited smoothness characteristics of the interference phase. In this method, statistical parameters of the wrapped phase are firstly obtained. The step is then followed by a self-calibration process to identify and correct corrupted data points to obtain preliminary unwrapped phases. Finally, a phase revision step is taken to remove the effects of the residual errors. A computational testing was carried out to demonstrate the performance of the proposed method at six different levels of noise injection. An experimental test was also carried out using a lateral shearing interferometer. The success and the precision achieved using the proposed algorithm show that the method is quite effective and accurate for phase recovery under the condition of noise contaminations.  相似文献   

14.
A new approach to load-stepping photoelasticity is presented in which the isochromatic phase is unwrapped between load steps rather than spatially. This is based on the technique known as ‘temporal phase unwrapping’ that has mainly been applied in shape measurement. The potential advantages of temporal phase unwrapping are based on the notion that each pixel is unwrapped independently of its neighbours. The benefits for load-stepping photoelasticity for reducing the effects of measurement error are discussed in this paper. New developments using temporal phase unwrapping are applied to experimental data obtained from a bimaterial interface specimen loaded in three-point bend. The results show that a modified approach to unwrapping significantly reduces the effects of systematic noise present in the data.  相似文献   

15.
为减少噪声对相位恢复过程的影响,快速得到正确的解包裹相位,提出了一种改进的相位解包裹方法——加权离散余弦变换解包裹算法。该方法把离散余弦变换和标识相位数据好坏的质量权值结合起来,兼有速度快和可靠度高的优势。为验证此算法,对模拟和实验得到的包裹相位图添加随机噪声和散粒噪声,同时采用加权与非加权离散余弦变换算法进行处理,所得到的解包裹结果与未加噪声的解包裹相位值进行比较,结果表明,通过加权离散余弦变换算法恢复的相位图比非加权离散余弦变换算法所恢复的相位图更接近于理想值,而且两种算法的运行速度基本相同,这证明提出的算法不仅保证了效率高的优点,而且所恢复的解包裹相位具有较好的噪声免疫能力和可靠度。  相似文献   

16.
White-light interferometric techniques have been widely used in three-dimensional (3D) profiling. This paper presents a new method based on vertical scanning interferometry (VSI) for the 3D profile measurement of a micro-component that contains sharp steps. The use of a white-light source in the system overcomes the phase ambiguity problem often encountered in monochromatic interferometry and also reduces speckle noises. A new algorithm based on the continuous wavelet transform (CWT) is used to retrieve the phase of an interferogram. The algorithm accurately determines local fringe peak and improves the vertical resolution of the measurement. The proposed method is highly resistant to noise and is able to achieve high accuracy. A micro-component (lamellar grating) fabricated by sacrificial etching technique is used as a test specimen to verify the proposed method. The measurement uncertainty of the experimental results is discussed.  相似文献   

17.
罗兵  薛敏 《应用声学》2016,24(9):43-46
工业自动化生产中微米级的三维测量大多采用相位测量轮廓术,但其中现有的包裹相位展开方法容易受图像噪声和相位突变的干扰;在电路板贴片安装的锡膏三维测量中,利用电路板的平面区域包裹相位信息进行平面估计,然后全局相位展开向拟合平面靠拢,根据统计信息确定参数,得到连续相位;利用展开后的相位再进行电路板平面的二次曲面拟合,提高基平面的拟合精度和相对高度;对比实验证明了该方法的鲁棒性和快速性,处理时间短,不受噪声、相位突变、阴影等干扰。  相似文献   

18.
基于相位跳变区划分的相位展开方法   总被引:4,自引:3,他引:1  
提出了一种相位跳变区域的确定方法,在此基础上提出一种基于相位跳变区划分的相位展开方法。计算机模拟和实验结果均证明:此方法对噪声有很强的抗干扰能力,能有效地实现带噪声的主值相位图的相位展开。  相似文献   

19.
一种新的快速解相位方法   总被引:8,自引:5,他引:3  
盖绍彦  达飞鹏 《光学学报》2008,28(2):259-267
提出了一种快速可靠的4步相移编码-解相位算法。通过对中心条纹的光强进行摄动,将编码信息加入到基本相移光栅中,使4幅基本相移图不但包含了相位场主值信息,还包含了解相位所需的编码信息。建立了摄动度函数描述相移图的摄动信息进而得到编码信息,解出完整的相位值。对摄动度函数的误差和噪声进行分析,提出方向滤波方法来消除噪声,极大地减少了编码信息的误判情况。仿真和实验证实了本算法的可行性。与传统相移法相比,解相位的速度和可靠性得到明显的提高。  相似文献   

20.
基于模拟退火的相位展开方法   总被引:10,自引:3,他引:7  
二维相位展开技术被广泛应用于光学精密测量、自适应光学、合成孔径雷达、图像处理等领域中。提出了一种基于模拟退火的相位展开方法。此方法对主值相位图采用局部平面近似,用模拟退火算法求出最优化平面参量,从而得到去除噪声和2π相位跳变的真实相位图。计算机模拟和实验结果均证明,此方法能有效地去除相位图中的噪声,实现带噪声的主值相位图的相位展开,可靠地重建被测物体的表面形貌。详细介绍了这一方法的原理及实验结果。  相似文献   

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