Augmented reality as a tool for visualization of ultrasound propagation in heterogeneous media based on the k-space method

V. Morkun, N. V. Morkun, A. Pikilnyak
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引用次数: 11

Abstract

For programming the AR tools, interactive objects and creating the markers, the method of fiber spaces (k-space) for modeling of ultrasonic wave propagation in an inhomogeneous medium using coarse grids, with maintaining the required accuracy was used. The algorithm and tools of augmented reality were introduced into the adaptive control system of the pulp gas phase in the iron ore flotation process using a control action on the basis of high-energy ultrasound dynamic effects generated by ultrasonic phased arrays. The tools of augmented reality based on k-space methods allow to facilitate wider adoption of ultrasound technology and visualize the ultra-sound propagation in heterogeneous media by providing a specific correspondence between the ultrasound data acquired in real- time and a sufficiently detailed augmented 3D scene. The tools of augmented reality allow seeing the field of ultrasound propagation, its characteristics, as well as the effect of the dynamic effects of ultrasound on the change in the gas phase during the flotation process.
增强现实作为一种基于k空间方法的异质介质中超声传播可视化工具
为了编程AR工具、交互对象和创建标记,使用纤维空间(k空间)方法,使用粗网格对超声波在非均匀介质中的传播进行建模,并保持所需的精度。采用基于超声相控阵产生的高能超声动态效应的控制作用,将增强现实算法和工具引入铁矿浮选过程中矿浆气相的自适应控制系统中。基于k空间方法的增强现实工具允许更广泛地采用超声技术,并通过提供实时获取的超声数据与足够详细的增强3D场景之间的特定对应关系,将异质介质中的超声波传播可视化。增强现实工具可以看到超声传播场及其特性,以及超声动态效应对浮选过程中气相变化的影响。
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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