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THE PERFORMANCE EVALUATION OF MULTI-IMAGE 3D RECONSTRUCTION SOFTWARE WITH DIFFERENT SENSORS

机译:不同传感器多图像3D重建软件的性能评估

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Today, multi-image 3D reconstruction is an active research field and generating three dimensional model of the objects is one the most discussed issues in Photogrammetry and Computer Vision that can be accomplished using range-based or image-based methods. Very accurate and dense point clouds generated by range-based methods such as structured light systems and laser scanners has introduced them as reliable tools in the industry. Image-based 3D digitization methodologies offer the option of reconstructing an object by a set of unordered images that depict it from different viewpoints. As their hardware requirements are narrowed down to a digital camera and a computer system, they compose an attractive 3D digitization approach, consequently, although range-based methods are generally very accurate, image-based methods are low-cost and can be easily used by non-professional users. One of the factors affecting the accuracy of the obtained model in image-based methods is the software and algorithm used to generate three dimensional model. These algorithms are provided in the form of commercial software, open source and web-based services. Another important factor in the accuracy of the obtained model is the type of sensor used. Due to availability of mobile sensors to the public, popularity of professional sensors and the advent of stereo sensors, a comparison of these three sensors plays an effective role in evaluating and finding the optimized method to generate three-dimensional models. Lots of research has been accomplished to identify a suitable software and algorithm to achieve an accurate and complete model, however little attention is paid to the type of sensors used and its effects on the quality of the final model. The purpose of this paper is deliberation and the introduction of an appropriate combination of a sensor and software to provide a complete model with the highest accuracy. To do this, different software, used in previous studies, were compared and the most popular ones in each category were selected (Arc 3D, Visual SfM, Sure, Agisoft). Also four small objects with distinct geometric properties and especial complexities were chosen and their accurate models as reliable true data was created using ATOS Compact Scan 2M 3D scanner. Images were taken using Fujifilm Real 3D stereo camera, Apple iPhone 5 and Nikon D3200 professional camera and three dimensional models of the objects were obtained using each of the software. Finally, a comprehensive comparison between the detailed reviews of the results on the data set showed that the best combination of software and sensors for generating three-dimensional models is directly related to the object shape as well as the expected accuracy of the final model. Generally better quantitative and qualitative results were obtained by using the Nikon D3200 professional camera, while Fujifilm Real 3D stereo camera and Apple iPhone 5 were the second and third respectively in this comparison. On the other hand, three software of Visual SfM, Sure and Agisoft had a hard competition to achieve the most accurate and complete model of the objects and the best software was different according to the geometric properties of the object.
机译:今天,多图像三维重建是一个活跃的研究领域,并生成物体的三维模型是一个在摄影测量和计算机视觉的最讨论的问题,可以使用基于图像范围系或方法来实现。如结构光系统和激光扫描仪通过基于范围的方法产生非常精确的和密集的点云引入了它们作为在工业可靠的工具。基于图像的3D数字化方法提供由一组从不同视点描绘它无序图像重建对象的选项。作为其硬件要求缩小到数字相机和计算机系统,它们组成一个有吸引力的三维数字化的方法,因此,虽然基于范围的方法一般都非常准确,基于图像的方法是低成本的并且可被容易地使用非专业用户。一的影响在基于图像的方法所获得的模型的准确度的因素之一是软件和算法用于产生三维模型。商业软件,开源和基于Web的服务的形式提供这些算法。在所获得的模型的准确度的另一个重要因素是所使用的传感器的类型。由于移动传感器公众的可用性,专业传感器普及和立体声传感器的问世,这三个传感器的比较在评价和寻找优化的方法来生成三维模型的有效作用。大量研究已经完成,以确定合适的软件和算法,从而实现精确和完整的模型,但很少注意所使用的传感器和最终模型的质量效果的类型。本文的目的是讨论并引入一个传感器和软件的适当组合,以提供具有最高准确度的完整模型。要做到这一点,不同的软件,在以往的研究中,进行了比较,并选择在每个类别中最流行的(电弧3D,视觉SFM,当然,Agisoft)。还具有不同的几何特性和特殊的复杂四个小的物体的选择和它们的精确的模型作为可靠真正的数据是使用ATOS紧凑扫描2M三维扫描仪创建。图像使用富士实时三维立体相机,苹果iPhone 5和尼康D3200专业相机,并使用每个软件获得了物体的三维模型拍摄。最后,对数据结果的详细审查之间的综合比较集表明,软件和用于生成三维模型传感器的最佳组合,直接关系到物体的形状以及最终模型的预期准确性。一般来说更好的定量和定性结果通过使用尼康D3200专业相机获得的,而富士实时三维立体相机和苹果iPhone 5是第二,在这种比较第三分别。在另一方面,三个软件Visual SFM,肯定和Agisoft的都很难竞争中实现的对象和最优秀的软件的最准确,最完整的模型根据物体的几何性质是不同的。

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