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Embodied experiment of levitation in microgravity in a simulated virtual reality environment for science learning

机译:科学学习模拟虚拟现实环境中微匍匐悬浮的实验

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This paper is about an interactive virtual reality (VR) installation that is designed and developed for school students who visit the DLR School Lab Bremen of the German Aerospace Center. Using immersive VR technology, we put the participants in place (avatar) of an astronaut who is located outside the International Space Station and can see the virtual world through the eyes of this avatar. This experiment let them experience the difference of interactions in microgravity and on the surface of the Earth. It is a visually and physically simulated whole body interactive VR environment where participants can intuitively explore physics of microgravity. The environment provides the possibility to perform reorientation strategies in microgravity. The digital tools that we used included Oculus Rift (DK1) head mounted display, Kinect (version 1) body tracking device, and a computer. We held a small user study to see if the system could improve the participants view about physics of microgravity. The results of this study show that the simulation was beneficial for participants and improved their ability to make better predictions about some interactions in microgravity.
机译:本文是关于互动虚拟现实(VR)安装,为参观德国航空航天中心DLR学校实验室不来梅的学校设计和开发。使用沉浸式VR技术,我们将参与者放在位于国际空间站之外的宇航员的地方(阿凡达),并且可以通过这种头像的眼睛看到虚拟世界。该实验让它们体验微匍匐和地球表面的相互作用的差异。它是一个视觉和物理模拟的全身互动VR环境,参与者可以直观地探索微匍匐的物理学。环境提供了在微争求中执行重新定位策略的可能性。我们使用的数字工具包括Oculus Rift(DK1)头戴式显示器,Kinect(版本1)车身跟踪设备和计算机。我们举行了一个小型用户学习,看看系统是否可以改善与会者对微匍匐物理学的看法。本研究的结果表明,模拟对参与者有益,并改善了他们对微匍匐的一些相互作用的更好预测的能力。

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