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Manipulation of virtual 3D objects with the use of graphic tags and AR technologies

机译:使用图形标签和AR技术操纵虚拟3D对象

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In the real world, we can easily manipulate small objects that we hold in our hands. We can see them carefully from each side, look at the details by bringing them close to the eyes, etc. and what if the object has microscopic dimensions or on the contrary - it is very large. In this case, the matter is not so simple. However, if we have digital models of such objects, the above problems can be solved with the use of virtual technologies. An interesting example may be the use of augmented reality for this purpose and graphic tags that act as triggers for the visualization process. The tags mentioned above also play the role of positioning and orientation system of the spatial configuration: a virtual object - an observer. The process of determining spatial parameters is initiated by the results of image processing and analysis. Tests of such a solution were carried out using the optical see-through display. Initial positioning and orientation of the object relative to the observer is carried out by analyzing the video stream coming from the integrated camera. Tests of such a solution were carried out using the optical see-through display. Initial positioning and orientation of the object relative to the observer is carried out by analyzing the video stream coming from the integrated camera. The extended scope of object manipulation (change of position, orientation and scale) is obtained by means of a GUI interface integrated with the display.
机译:在现实世界中,我们可以轻松操纵手持的小物体。我们可以从各个侧面仔细地看到它们,将它们靠近眼睛等来观察细节,如果物体具有微观尺寸,或者相反,该物体非常大,该怎么办。在这种情况下,问题就不那么简单了。但是,如果我们拥有此类对象的数字模型,则可以通过使用虚拟技术来解决上述问题。一个有趣的示例可能是为此目的使用增强现实和用作可视化过程触发器的图形标签。上面提到的标签还扮演着空间配置的定位和定向系统的角色:虚拟对象-观察者。确定空间参数的过程由图像处理和分析的结果启动。使用光学透明显示器对这种溶液进行测试。通过分析来自集成摄像机的视频流,可以实现对象相对于观察者的初始定位和定向。使用光学透明显示器对这种溶液进行测试。通过分析来自集成摄像机的视频流,可以实现对象相对于观察者的初始定位和定向。通过与显示器集成的GUI界面可以获得对象操作的扩展范围(位置,方向和比例的更改)。

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