考虑航空航天特定特征的增强现实训练系统中的视觉一致性

A. L. Gorbunov, Yu. Li
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引用次数: 0

摘要

2022年5月,沙特政府机构沙特阿拉伯军事工业公司(Saudi Arabian Military Industries)收购了一个增强现实飞行员培训平台。今年9月,波音公司开始开发一款增强现实飞行员模拟器。去年11月,英国领先的航空工程开发商BAE系统公司启动了一个类似的项目。这些事实使我们能够自信地谈论航空模拟器新时代的开始-使用增强现实技术的模拟器。这项技术的一个有前途的优点是能够安全地模拟现实世界中的危险情况。使用这一优势的必要条件是确保增强现实场景的视觉一致性:虚拟对象必须与真实对象无法区分。所有的全球IT领导者都将增强现实视为数字电子技术巨变的后续浪潮,因此视觉一致性正在成为未来IT的关键问题,而在航空航天应用中,视觉一致性已经获得了实际意义。俄罗斯联邦在研究一般的视觉一致性问题,特别是增强现实飞行模拟器的问题方面远远落后:在出版时,作者设法在俄罗斯研究领域只找到了两篇关于这一主题的论文,而在国外,这方面的论文已经大约有一千篇。本文的目的是为解决这一问题创造条件。视觉一致性取决于许多因素:照明、色调、虚拟物体在真实物体上的阴影、相互反射、虚拟表面的纹理、光学像差、收敛和调节等。本文回顾了专门用于评估真实场景的照明和色调条件的方法的出版物,并使用各种探针和单个图像将它们转移到虚拟对象,以及通过在增强现实场景中渲染虚拟对象,使用神经网络。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Visual coherence in augmented reality training systems considering aerospace specific features
In May 2022, Saudi Arabian Military Industries, a Saudi government agency, acquired an augmented reality training platform for pilots. In September, the Boeing Corporation began the development of an augmented reality pilot simulator. In November, a similar project was launched by BAE Systems, a leading British developer of aeronautical engineering. These facts allow us to confidently speak about the beginning of a new era of aviation simulators – simulators using the augmented reality technology. One of the promising advantages of this technology is the ability to safely simulate dangerous situations in the real world. A necessary condition for using this advantage is to ensure the visual coherence of augmented reality scenes: virtual objects must be indistinguishable from real ones. All the global IT leaders consider augmented reality as the subsequent surge of radical changes in digital electronics, so visual coherence is becoming a key issue for the future of IT, and in aerospace applications, visual coherence has already acquired practical significance. The Russian Federation lags far behind in studying the problems of visual coherence in general and for augmented reality flight simulators in particular: at the time of publication the authors managed to find only two papers on the subject in the Russian research space, while abroad their number is already approximately a thousand. The purpose of this review article is to create conditions for solving the problem. Visual coherence depends on many factors: lighting, color tone, shadows from virtual objects on real ones, mutual reflections, textures of virtual surfaces, optical aberrations, convergence and accommodation, etc. The article reviews the publications devoted to methods for assessing the conditions of illumination and color tone of a real scene and transferring them to virtual objects using various probes and by individual images, as well as by rendering virtual objects in augmented reality scenes, using neural networks.
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