首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 203 毫秒
1.
针对彩色编码条纹投影轮廓术中,被测物体表面颜色易与投影条纹颜色发生干扰的问题,提出了一种新的基于互补色编码条纹投影的三维测量方法.先后向被测物体投影一幅主彩色编码正弦条纹图和一幅与前者包含的彩色编码条纹颜色互为补色的彩色条纹图.利用两者颜色互补的特点,判断两幅图像中对应像素点的颜色状态来确定其在主彩色编码正弦条纹图中所...  相似文献   

2.
针对三维形貌测量技术中彩色物体表面反射率的非均匀性影响测量结果的问题,提出一种基于自适应条纹投影的三维形貌测量技术,该方法可避免彩色物体表面反射率非均匀的影响,提高系统的测量精度。彩色相机采集RGB光强图像,并根据物体表面颜色的反射特性计算每个像素点的最优投射光强和颜色;采集水平和垂直的正弦条纹序列,利用计算所得绝对相位值将相机图像坐标系中每一个像素点的最优投射光强和颜色映射到投影仪像素坐标系;投射自适应条纹序列进而测量彩色物体的三维形貌。实验结果表明,该方法能够有效测量彩色物体三维形貌,具有很高的测量精度。  相似文献   

3.
提出了一种N元编码时间相位展开方法来实现彩色复杂物体的三维测量。传统的阶梯状条纹在测量整个表面反射率范围较大的物体时,条纹数量过多会导致量化困难。利用从相移条纹中提取的N元正弦码元替换传统的量化灰度码元,通过进制转换将N元正弦码元嵌入到所要投影的条纹中来实现条纹级次的编码。在解码时,先通过编码条纹与N步正弦相移条纹的差异逐点计算N元量化条纹,再根据对应的逆进制转换获取唯一的条纹级次,最后利用截断相位消除条纹级次边缘处的错位误差。实验结果表明,相比传统的时间相位展开方法,所提方法有效提高了编码效率,并在测量彩色复杂场景时表现出了较高的鲁棒性。  相似文献   

4.
为快速获取空间不连续三维物体表面的绝对相位,提出了一种基于编码光栅的相位展开方法。该方法只需投射一幅带有编码信息的光栅条纹图像,即可获取相位展开所必需的条纹级数信息,从而得到整个被测表面的绝对相位信息。根据相位-深度关系,可获得整个被测表面的三维信息。与基于格雷码的相位展开方法相比,该方法不依赖被测物体的灰度信息,抗噪声性能更好。该方法只需额外投射一幅编码条纹图像,更适用于对实时性要求比较高的三维测量。通过实验证明了该方法的有效性和可行性。  相似文献   

5.
提出了一种新的快速获取物体三维形貌和纹理信息的方法。利用数字投影仪将2幅彩色编码的正弦相移光栅图投影到被测物体表面,彩色相机捕捉经物体调制后的变形条纹图。提取RGB三基色,可获得包含物体高度信息及纹理信息的条纹图和背景光。对包含物体高度信息的条纹图用改进的2+1相移算法重构物体的三维形貌。物体纹理信息则通过对背景光进行彩色编码获得,利用纹理映射技术恢复物体纹理。计算机模拟和实验结果验证了该方法的有效性和可行性。  相似文献   

6.
传统傅里叶变换轮廓术(FTP)采用单一频率条纹测量时存在着由于待测物体高度变化剧烈导致的相位展开困难。结合数字点阵和正弦条纹投影的复合编码三维数字成像方法能有效解决相位模糊和误差传播的问题,但在实际测量中需要分别采集点阵图像和正弦条纹图像,影响了测量的实时性。提出一种新型彩色复合光栅测量方法,实现了从一帧图像中分别得到点阵图像和正弦条纹图像,并以点阵图像为依据对正弦条纹图的截断相位进行展开。理论分析和实验结果表明,该方法适合于不连续物体的三维测量,同时抑制误差传播能力强,具有较高的测量效率。  相似文献   

7.
基于彩色光栅投影的快速三维测量方法   总被引:2,自引:1,他引:1  
王露阳  达飞鹏 《应用光学》2011,32(2):276-281
 针对条纹投影术提取物体高度信息的问题,提出了一种新的基于彩色光栅投影的三维测量方法。对选取G分量为255,R,B分量各取0或255而组成的青、白、黄、绿四色遵循格雷码原理进行编码,然后将G分量作正弦调制形成投影光栅投向被测物体。提取采集到的光栅变形图中G分量,利用傅里叶变换方法得到其初始相位;同时对采集到图像中的R,B分量作阈值迭代分割而G分量自动赋值为255,综合三分量信息得到条纹颜色信息进而获取条纹的周期信息,从而展开相位。全过程仅需投影一幅彩色光栅图就能完成三维测量,实验结果表明该算法易于实现,在测量实时性和精确性上表现良好。  相似文献   

8.
单幅彩色条纹投影的不连续物体表面三维形貌测量   总被引:3,自引:1,他引:2  
戴美玲  杨福俊  耿敏  何小元  康新 《光学学报》2012,32(4):412005-142
提出了基于单幅彩色条纹投影的不连续物体及动态三维形貌的测量方法。该方法利用计算机产生一幅正弦条纹图和两幅单一强度图分别通过红蓝绿三个通道合成为一幅彩色条纹图,由液晶投影仪投影到被测物体表面,彩色CCD采集变形条纹图并保存在计算机中。通过三色分离,同时获得正弦条纹图和反映表面反射率分布及背景信息图,通过图像除法运算及亚像素精度归一化处理实现物体三维形貌的恢复。对于表面形貌不连续的物体,利用蓝色分量的灰度图像进行二值化处理定位阴影或暗背景,从而引导正确的相位求解。实验验证了该方法对不连续物体动态测量方面的可行性。  相似文献   

9.
基于相移的彩色结构光编码三维扫描技术   总被引:1,自引:0,他引:1  
孙军华  杨扬  张广军 《光学技术》2008,34(1):122-125
在物体三维轮廓扫描中,被动式双目立体视觉方法对表面特征不明显的物体难以获取足够的三维信息,针对这一问题,基于双目立体视觉原理,结合主动视觉中结构光投射方法,提出了基于相移的彩色结构光编码方法。该方法将四种颜色按照全排列的相关性质编码产生彩色光栅投射在被测物体表面,依据光栅相位移动增大光栅密度,结合极线约束实现立体匹配,最终获取物体三维数据。结果表明使用该三维扫描技术得到的三维曲面符合原物特征,特别适用于物体三维轮廓的致密测量。  相似文献   

10.
关颖健  彭翔  高志  田劲东 《光学学报》2008,28(s2):244-248
提出一种基于数字信号处理器(DSP)的嵌入式三维数字成像系统设计方案。该方案的硬件平台由条纹投影模块、数据采集模块、条纹自动分析模块及储存器等其他辅助电路组成。条纹投影模块将DSP输出的正弦光栅条纹, 经视频编码后用DLP投射到物体表面; 数据采集模块通过CCD相机采集被物体表面三维信息调制后的变形条纹图, 并进行视频解码; 条纹自动分析模块中利用相移算法计算折叠相位, 再结合相位展开算法求绝对相位分布。系统软件采用多线程技术并行控制三个模块。在相位解调过程中以软件流水线为主综合运用了循环展开、数据预取和内联函数等多种方法优化解调程序。实验结果表明, 该系统可以高速、准确地实现三维轮廓测量,优化后相位展开程序速度是优化前的7倍。  相似文献   

11.
3D measurement techniques based on color-encoded fringe pattern projection have been widely used in various fields of engineering recently. There is one problem that the surface color of measured object may interfere with the color of projected fringe pattern. To solve this problem, a novel method based on complementary color-encoded fringe projection is proposed. Two color-encoded fringe patterns whose fringe colors are complementary are designed. The first pattern is with the sinusoidal fringe embedding into the green color channel which is used to evaluate phases by Fourier transform method. The fringe color of the captured image is established with the help of the complementary color fringe pattern, which is based on the feature of color complementation. Thus, the influence brought by the color of object surface can be eliminated, and decoding errors can be further reduced. Experiment results indicate that the proposed method is valid and can be applied to the measured colorful objects.  相似文献   

12.
Feipeng Da  Hao Huang 《Optik》2012,123(24):2233-2237
A novel Fourier transform 3D shape measurement method based on color fringe projection is proposed in order to solve the spectrum overlapping and phase unwrapping problems existed in Fourier transform profilometry (FTP). The R and G components of the color fringe are set to two sinusoidal patterns with different frequencies and the B component is set to the average value of R or G component. Then this pattern is projected to the object and the deformed fringe image is captured. Three gray patterns are separated from the color fringe, the background and high frequency noise can be eliminated using our method and the accurate unwrapped phase can be got. Only one shot color pattern is projected to get the 3D information of the object. Experiment results show that the 3D information of an object can be obtained rapidly and accurately.  相似文献   

13.
Lujie Chen  Cho Jui Tay  Yuanhao Huang 《Optik》2005,116(3):123-128
Quality-guided algorithm is a widely used method in phase unwrapping. This paper shows an accurate quality map based on fringe contrast for 3D shape measurement. Phase-shifted fringe patterns are projected onto an object surface by a programmable liquid crystal projector and recorded by a CCD camera. A wrapped phase map and a fringe contrast map are extracted from the deformed fringe patterns by the phase-shifting technique. Guided by the contrast map, the quality-guided unwrapping algorithm minimizes unwanted shadow and non-uniform surface reflectance effects and is able to retrieve a correct surface profile. Validity of the proposed method is tested on a fish model and a cutting tool specimen.  相似文献   

14.
This paper presents a method that can recover absolute phase pixel by pixel without embedding markers on three phase-shifted fringe patterns, acquiring additional images, or introducing additional hardware component(s). The proposed three-dimensional (3D) absolute shape measurement technique includes the following major steps: (1) segment the measured object into different regions using rough priori knowledge of surface geometry; (2) artificially create phase maps at different z planes using geometric constraints of structured light system; (3) unwrap the phase pixel by pixel for each region by properly referring to the artificially created phase map; and (4) merge unwrapped phases from all regions into a complete absolute phase map for 3D reconstruction. We demonstrate that conventional three-step phase-shifted fringe patterns can be used to create absolute phase map pixel by pixel even for large depth range objects. We have successfully implemented our proposed computational framework to achieve absolute 3D shape measurement at 40 Hz.  相似文献   

15.
An improved phase unwrapping method is proposed to reduce the projection fringes in three-dimensional (3D) surface measurement. Color fringe patterns are generated by encoding with sinusoidal fringe and stair phase fringe patterns in red and blue channels. These color fringe patterns are projected onto the tested objects and then captured by a color CCD camera. The recorded fringe patterns are separated into their RGB components. Two groups of four-step phase-shifting fringe patterns are obtained. One group of the stripes are four sinusoidal patterns, which are used to determine the wrapped phase. The other group of stripes are four sinusoidal patterns with the codeword embedded into stair phase, whose stair changes are perfectly aligned with the 2π discontinuities of sinusoidal fringe phase, which are used to determine the fringe order for the phase unwrapping. The experimental results are analyzed and compared with those of the method in Zheng and Da (2012. Opt Express 20(22):24139–24150). The results show that the proposed method needs only four fringe patterns while having less error. It can effectively reduce the number of projection fringes and improve the measuring speed.  相似文献   

16.
王柳  陈超  高楠  张宗华 《应用光学》2018,39(3):373-378
结构光投影方法在三维形貌测量中应用广泛,但是由于被测物体表面反射率变化范围较大,过度曝光会导致相位信息无法获取。而传统的高动态范围扫描技术步骤复杂,耗时较长。文中提出一种自适应条纹投影技术,向待测物体表面投射较高灰度级的条纹图,判断并标记过度曝光点。降低投射强度后通过非线性最小二乘法拟合来确定每个饱和像素点最适合的最大输入灰度,用重新生成的自适应条纹图来采集图像并进行相位计算和三维形貌恢复。通过实验验证,该方法可以对物体表面的高反光区域进行有效测量,避免过度饱和,仿真误差在0.02 mm范围内,实测误差约为0.14 mm,实际实验对过曝点的补偿率可达到99%。  相似文献   

17.
相移阴影莫尔条纹正交化解调技术   总被引:1,自引:0,他引:1  
提出一种基于克莱姆正则化分析法的三帧自标定相移阴影莫尔三维轮廓技术.该技术首先采用移动光栅的方法获得相移条纹图,然后通过不同帧相移条纹图相减去除条纹图背景,进而结合克莱姆正交化法和最小二乘法,发展了一种相位解调方法,提取了测量相位.以五步Harlharan算法为参考,用不同算法对同一物体表面进行测量.结果表明,相对于典型的三步相移法和主量分析方法,提出的方法测量得到的相位误差最小(0.5rad),且简化了测量过程.  相似文献   

18.
基于双色条纹投影的快速傅里叶变换轮廓术   总被引:14,自引:5,他引:9  
在实际傅里叶变换轮廓术测量中,获取的条纹图扩展的零频分量对傅里叶变换轮廓术的测量精度和测量范围有很大影响,甚至妨碍正确三维面形的恢复。π相移技术常被用来消除零频分量对测量的影响,但需要在测量系统中安装精密相移装置,并需要采集两帧具有π相位差的条纹图。传统傅里叶变换轮廓术中,完成精密相移需要较长的时间,影响了傅里叶变换轮廓术测量方法的实时性。提出了采用双色正弦光栅投影来实现从一帧条纹图中消除零频对傅里叶变换轮廓术测量的影响。该方法同传统的π相移方法相比,不需要相移装置,测量系统简单,并且能真正实现高速测量。  相似文献   

19.
A simple and accurate algorithm (phase scanning method) is proposed for 3D surface contouring and dynamic response determination of a vibrating object. A sinusoidal fringe pattern is projected onto a low-frequency vibrating object by a programmable liquid crystal display projector. The fringe patterns are captured by a high-speed CCD camera with a telecentric gauging lens. Phase values are evaluated point by point using phase scanning method. From the phase values of each point on the object, the contour of the specimen at different instants of vibration can be retrieved. In this paper, a small vibrating coin is used to demonstrate the validity of the method and the experimental results are compared with test results on a stationary coin using four-step phase shifting and fast Fourier transform methods. The technique is especially useful in applications where the vibrating object has a complicated shape.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号