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1.
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   

2.
复杂表面的精密三维测量在工业无损检测中非常重要。二进制条纹离焦投影方法在快速三维测量中有重要的应用前景,但该方法难以实现复杂表面高精度三维测量。为此,提出了基于二进制条纹加相位编码条纹离焦投影的三维测量方法。由于离焦投影滤除了高次谐波和高频噪声,可以克服投影仪的非线性伽马效应,与传统投影正弦条纹方法相比,提高了其测量精度。针对离焦投影时,随着相位编码条纹频率增大,条纹级次判决困难,出现周期错位,导致相位解包裹出错,提出了相移编码方法来解决以上问题。采用相移编码方法校正周期错位,使条纹级次判决准确,进一步提高其测量精度。实验结果表明,其测量精度可以达到0.044 mm,验证了本方法的有效性和实用性。  相似文献   

3.
减少条纹投影轮廓术的条纹图数量一直是本领域的研究热点。传统的时间相位解包裹算法,一般需要额外的条纹信息来确定条纹级次,导致条纹图数量过多。提出一种用于三维测量的快速相位解包裹算法,只需要N步标准相移正弦条纹图,就可以完成绝对相位的计算。首先,利用标准相移算法计算包裹相位和消除背景的掩膜;然后,直接利用包裹相位和掩膜,根据连通域标记算法计算条纹级次,进而求得绝对相位。该方法最少只需3幅条纹图,就可以完成三维测量,数据处理速度快。计算机仿真和实验结果验证了该方法的有效性和鲁棒性。  相似文献   

4.
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   

5.
《光学学报》2021,41(5):27-37
格雷码辅助实现的相位测量轮廓术具有较好的鲁棒性和抗噪能力,是三维测量领域的一个研究热点。在已有测量方法的基础上,提出了一种把格雷码嵌入相移条纹进行复合图案投影的三维面形测量方法,通过将传统的3幅格雷码图案整体向右移动半个条纹周期,共得到6幅格雷码图,将其交替嵌入三组相同的四步相移条纹中并结合二值离焦技术依次进行投影。通过拍摄得到一系列变形复合条纹图案后,沿时序综合前后三组变形复合图案信息并进行解码,从而获得两组错位的条纹级次,这可从源头上避免格雷码级次边沿的错误;同时采用传统相移算法计算得到对应的截断相位分布,时序上的综合解码结果可用于指导截断相位产生并重建被测物体的三维面形信息。静态和动态场景的三维测量实验结果验证了该方法的可靠性、高效性和鲁棒性。该方法每多记录5幅图案就可以对应新重建出一个三维面形,在高速动态三维测量中具有较好的实用性。  相似文献   

6.
一种两步相移相位解算方法   总被引:1,自引:0,他引:1  
提出一种将傅里叶与相移法结合的三维物体快速测量方法.通过时域提取精确的均值包络与频域滤波结合的方法预处理条纹,结合基于相位半角的两步相移,只需要两幅相移条纹图,即可得到精确的相位信息.通过仿真和实验将本文方法与现有方法进行了分析对比,实验结果证明,本文方法可以获得优于现有两步相移方法的准确度,一般测量环境下的均方根误差在3×10~(-3) rad以内.本文提出的方法对噪声和表面突变不敏感,具有鲁棒性好、运算速度快、准确度高等优点,在三维快速测量领域有较高的应用价值.  相似文献   

7.
提出一种二进制编码条纹代替正弦条纹的方法,以降低三维测量系统的非线性误差。首先,通过对传统正弦条纹一个周期内呈正弦变化的光强值进行二进制编码,将所有二进制编码的每一位分别组合生成二值条纹,投影到被测物体表面。然后,将采集到的多幅二值条纹进行叠加,生成正弦条纹。最后,结合四步相移技术,并使用互补格雷码辅助相位展开进行实验验证。实验结果表明,所提方法相比于传统四步相移方法可以有效降低非线性伽马效应导致的相位误差,提高测量精度。对直径为50.8140 mm的高精度标准球进行测量,所得的局部点云与拟合标准球的平均距离为0.0697 mm。  相似文献   

8.
相移轮廓术是一种广泛使用的光学三维测量方法,其精度不仅受相位展开算法本身的影响,也受测量系统中投影仪和摄像机的非线性影响。理论上,投射更多的相移条纹可减弱非线性误差的影响,但是增加了测量时间。为了提高误差校正的效率,提出了一种基于梯形正弦相移的测量方法。该方法需要两组改进的梯形相移条纹和一幅正弦条纹。梯形条纹提供图像强度信息和条纹级次信息,图像强度信息用来求取系统的非线性响应曲线,进一步消除系统的非线性。正弦条纹经过希尔伯特变换可求得额外的条纹图像,用来计算截断相位信息。经过校正的截断相位信息,可进一步获取精度较高的三维信息。相较于先前的梯形与正弦误差校正方法,该方法的测量效率提高了28%。  相似文献   

9.
一种三维变形光学测量系统及微结构力学性能测试应用   总被引:1,自引:0,他引:1  
描述了一种使用显微栅线投影技术和数字图像相关技术同时测量微结构三维形貌和变形的光学测量系统.在此系统中,正弦栅线通过相移投影器投影到被测物体表面,变形的条纹图由高分辨率的CCD相机和显微镜头采集并保存.相移技术处理条纹图得到形貌和离面变形,同时从相移图像中提取出被测物表面纹理,数字图像相关技术处理变形前后表面纹理得到面...  相似文献   

10.
为了在黑白摄像机中快速获取场景的三维形貌与颜色纹理,提出了绝对相位测量结合主动彩色照明的方法.首先向物体投影并拍摄两幅相移为1/3周期的条纹和一幅周期有微小差别的条纹图;然后分别向物体投射光强为给定强度的白、红及绿照明光,并拍摄图像.用改进的相移法求解第四幅图像与第一、第二幅变形条纹图中的相位;用改进的傅里叶变换法求解第四幅图像及第三幅变形条纹图中的相位;然后得出绝对相位值.最后利用第四幅图像与第五和第六幅图像求出场景反射的蓝色分量,并根据色度学原理恢复出场景的颜色纹理.实验表明,该方法在保证三维测量准确度的同时获得了高质量的颜色纹理,实现了30fps的三维数据及颜色纹理采集速度.  相似文献   

11.
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   

12.
As the blade must have precise size and accurate shape, three-dimensional (3D) profile measurement of the blade is very important. 3D profile measurement method based on multi-value coding is proposed. This method designs a multi-value coding stripe pattern combined with the four-step phase-shifting method. Two kinds of fringe patterns are projected onto the object respectively, one is sinusoidal intensity distribution used for wrapped phase, the other is multi-value coding fringe pattern for phase unwrapping. Because this encoding method is simple, and easy to implement, the absolute phase can be quickly implemented. Experimental results demonstrated that the proposed method can achieve a high precision, high speed and low cost 3D profile measurement of the blade.  相似文献   

13.
As the blade must have precise size and accurate shape, three-dimensional profile measurement of the blade is very important. In this paper, three-dimensional profile measurement method of the blade based on surface structured light is proposed. A new phase unwrapping method is also proposed. This encoding method combined coding fringe pattern with the four-step phase-shifting method, the coding information is embedded into the phase, which can be used to determine fringe order for absolute phase retrieval. The encoding method is simple and easy to implement, so the phase unwrapping of the blade can be quickly perform. The experimental and simulation results show that the method can achieve a high precision, high speed and low cost three-dimensional profile measurement of the blade.  相似文献   

14.
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   

15.
A new multi-frequency inverse-phase method was proposed to compensate for nonlinear phase errors in fringe projection profilometry and to measure the three-dimensional shape of discontinuous objects. After introducing a phase offset of π/4 into the multi-frequency four-step phase-shifting method the corresponding nonlinear phase error reversed its sign, which allowed the addition of unwrapped phases before and after the phase-offset operation to compensate for the error. For the four-step phase-shifting method, simulation analysis showed that the nonlinear phase error had quadrupled the fringe frequency. Moreover, experimental results verified the feasibility and applicability of the proposed method.  相似文献   

16.
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   

17.
基于双频彩色条纹投影的相位测量去包裹方法   总被引:3,自引:0,他引:3  
施展  赵宏  张璐 《光学学报》2007,27(3):461-465
为了提高测量速度,提出一种基于双频彩色条纹投影的相位测量去包裹方法,只需采集一帧图像,就能实现高速测量以及动态物体轮廓测量中的相位去包裹。论述了双频相位测量和变精度去包裹原理,并详细分析影响测量精度的因素。该方法采用计算机生成一帧双频双色正弦条纹图,用液晶数字投影仪投影,并用傅里叶变换的方法对两个单色条纹图进行分析,获得高低两种精度的被测物体高度信息,从而进行变精度去包裹处理。结果表明,利用该方法提高了测量速度,可得到较高的去包裹精度,其测量最大绝对误差为 1.413~-1.582 mm,标准差为0.363 mm。  相似文献   

18.
Zhenfen Huang  Yiping Cao  Aiping Zhai  Yuhang He  Jun Kou 《Optik》2012,123(21):1915-1919
A new 3D shape measurement method based on non-integral twin-frequency grating projection is proposed. In this paper, the projected composite grating is composed of two sinusoidal gratings, and the quotient of whose frequencies is not an integer. By using appropriate phase-shifting algorithms, two wrapped phases can be obtained from sixteen frames of the distorted grating patterns. In aid of appropriate phase unwrapping method, the unwrapped phase of high frequency fringe is obtained only from the relation of the two wrapped phases by a pixel-to-pixel phase unwrapping technique. Therefore the unwrapped phase of high frequency fringe pattern is independent of the low frequency fringe pattern, different from traditional integral twin-frequency grating projection methods in which the phase unwrapping error of low frequency fringe pattern may be propagated onto the unwrapped phase of high frequency fringe pattern. The new theory proves that the proposed method is applicable to measure discontinuous object, and has considerable measurement accuracy.  相似文献   

19.
为了实现对具有明显跳变面物体的轮廓测量,建立了四步相移光栅投影的三维形貌测量系统,并对所采用的四步相移测量算法进行研究。在介绍四步相移原理的基础上以有明显跳变面的三棱锥橡皮块为例,建立针对明显跳变面的测量算法。通过对4幅相移图算术求和并除以4得到平均灰度图;将平均灰度图二值化处理定位明显跳变面或阴影部分;将二值化图像与包裹相位图卷积,而后对包裹相位图进行解包裹,从而得到正确的连续相位,最终获取物体三维形貌。根据上述算法测量三棱锥的三维形貌并计算其体积,测量实验表明:被测物的体积平均相对精度为0.47%。  相似文献   

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