Real Time 3D Capturing System for Quality Analysis

Benjamin Koshy Alex, Chandran G Jyothish, Julian Thomas Prasad, Samanta Cottackal
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Abstract

A real time 3D capture system for an object is designed and developed in this paper. In a fast-moving world where whatever that is seen around is three dimensional, most of the techniques which are devised to study an object gives a two-dimensional output. In other words, a clear idea about such spatial objects is obtained rarely. The existing techniques which are available, moreover gives an output which is not real-time, that is when an object is subjected for study, the intended results cannot be obtained in a parallel manner. In real time 3D capture, the focus is on studying three- dimensional objects in real-time. This proposal solely accentuates human perception to a different perspective. The primary goal of the technique that is inculcated in this project is to recreate the purpose of the human eye through a capturing system. This is served by the technique of stereovision. This involves distance calculation to an object from point of observation. As a result, the depth is calculated in 3D space. The system consists of two camera modules synchronized together which are further connected to a processor(computer) and output is fed to a display unit. This system brings off the task of quality analysis. The locus point in quality analysis is to find the physical deformities. Predominantly, this system is devised to equip and encourage the small scale production units or factories to aid them in an inclusive way.
用于质量分析的实时三维捕获系统
本文设计并开发了一个物体实时三维捕获系统。在一个快速发展的世界里,无论看到什么都是三维的,大多数用于研究物体的技术都给出了二维的输出。换句话说,对这样的空间对象很少有清晰的认识。此外,现有的可用技术给出的输出不是实时的,也就是说,当一个对象被研究时,不能以并行的方式获得预期的结果。在实时三维捕获中,重点是对三维物体的实时研究。这个提议只是强调了人类的感知到一个不同的角度。在这个项目中灌输的技术的主要目标是通过捕捉系统来重现人眼的目的。这是通过立体视觉技术来实现的。这包括从观测点计算到目标的距离。因此,深度是在三维空间中计算的。该系统由两个同步的相机模块组成,它们进一步连接到处理器(计算机)并将输出馈送到显示单元。该系统完成了质量分析的任务。质量分析的重点是发现物理缺陷。这个系统主要是为了装备和鼓励小规模的生产单位或工厂,以一种包容的方式帮助他们。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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