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Repercussion of geometric and dynamic constraints on the 3D rendering quality in structurally adaptive multi-view shooting systems

机译:结构自适应多视图拍摄系统中几何和动态约束对3D渲染质量的影响

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in this paper a simulator of a multi-view shooting system with parallel optical axes and structurally variable configuration is proposed. The considered system is dedicated to the production of 3D contents for auto-stereoscopic visualization. The global shooting/viewing geometrical process, which is the kernel of this shooting system, is detailed and the different viewing, transformation and capture parameters are then defined. An appropriate perspective projection model is afterward derived to work out a simulator. At first, this latter is used to validate the global geometrical process in the case of a static configuration. Next, the simulator is used to show the limitations of a static configuration of this shooting system type by considering the case of dynamic scenes and then a dynamic scheme is achieved to allow a correct capture of this kind of scenes. After that, the effect of the different geometrical capture parameters on the 3D rendering quality and the necessity or not of their adaptation is studied. Finally, some dynamic effects and their repercussions on the 3D rendering quality of dynamic scenes are analyzed using error images and some image quantization tools. Simulation and experimental results are presented throughout this paper to illustrate the different studied points. Some conclusions and perspectives end the paper.
机译:本文提出了一种具有平行光轴和结构可变配置的多视角拍摄系统的模拟器。所考虑的系统专用于自动立体可视化的3D内容制作。详细介绍了全局拍摄/查看几何过程,这是此拍摄系统的核心,然后定义了不同的查看,转换和捕获参数。随后,导出适当的透视投影模型以制定模拟器。首先,后者在静态配置的情况下用于验证全局几何过程。接下来,通过考虑动态场景的情况,使用模拟器来演示这种拍摄系统类型的静态配置的局限性,然后实现一种动态方案以允许正确捕获此类场景。之后,研究了不同几何捕获参数对3D渲染质量的影响以及是否需要对其进行适应。最后,使用误差图像和一些图像量化工具分析了一些动态效果及其对动态场景3D渲染质量的影响。本文通篇给出了仿真和实验结果,以说明不同的研究重点。一些结论和观点结束了本文。

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