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Application of Phase Shifting Projection Moire on Solid Regular Figures and Plant Organs Three Dimensional Digital Model Generation

机译:相移投影莫尔在固态常规图和植物器官三维数字模型生成中的应用

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The conception of a tridimensional digital model of solid figures and plant organs started from topographic survey of virtual surfaces [1], followed by topographic survey of solid figures [2], fruit surface survey [3] and finally the generation of a 3D digital model [4] as presented by [1]. In this research work, i.e. step number [4] tested objects included cylinders, cubes, spheres and fruits. A Ronchi grid named G1 was generated in a PC, from which other grids referred as G2, G3, and G4 were set out of phase by 1/4, 1/2 and 3/4 of period from G1. Grid G1 was then projected onto the samples surface. Projected grid was named Gd. The difference between Gd and G1 followed by filtration generated de moiré fringes M1 and so on, obtaining the fringes M2, M3 and M4 from Gd. Fringes are out of phase one from each other by 1/4 of period, which were processed by the Rising Sun Moiré software to produce packed phase and further on, the unpacked fringes. Tested object was placed on a goniometer and rotate to generate four surfaces topography. These four surveyed surfaces were assembled by means of a SCILAB software, obtaining a three column matrix, corresponding to the object coordinates xi, also having elevation values and coordinates corrected as well. The work includes conclusions on the reliability of the proposed method as well as the setup simplicity and of low cost.
机译:从虚拟表面的地形调查开始贯穿阶段数字模型的概念[1],其次是对实体数据的地形调查[2],果实表面调查[3],最后产生3D数字模型的产生[4]如[1]所示。在本研究工作中,即步骤编号[4]测试对象包括圆柱,立方体,球形和水果。在PC中生成名为G1的RONCHI网格,将作为G2,G3和G4称为G2,G3和G4的其他网格在G1周期中被设为1/4,1 / 2和3/4。然后将栅格G1投射到样品表面上。投影网格被命名为GD。 GD和G1之间的差异,然后过滤产生DeMoiréFingesm1等,从Gd获得FRINE M2,M3和M4。边缘在1/4的时间内彼此不相位,由冉冉升起的SunMoiré软件加工,以产生包装的阶段并进一步开启,即未包装的条纹。将测试对象放置在测梁计上并旋转以产生四个表面形貌。这四个受测量的表面通过SPILAB软件组装,获得三列矩阵,对应于物体坐标Xi,也具有校正的高度值和坐标。该工作包括关于所提出的方法的可靠性以及设置简单性和低成本的结论。

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