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Natural Interaction Metaphors for Functional Validations of Virtual Car Models

机译:用于虚拟汽车模型功能验证的自然交互隐喻

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Natural Interaction in virtual environments is a key requirement for the virtual validation of functional aspects in automotive product development processes. Natural Interaction is the metaphor people encounter in reality: the direct manipulation of objects by their hands. To enable this kind of Natural Interaction, we propose a pseudophysical metaphor that is both plausible enough to provide realistic interaction and robust enough to meet the needs of industrial applications. Our analysis of the most common types of objects in typical automotive scenarios guided the development of a set of refined grasping heuristics to support robust finger-based interaction of multiple hands and users. The objects' behavior in reaction to the users' finger motions is based on pseudophysical simulations, which also take various types of constrained objects into account. In dealing with real-world scenarios, we had to introduce the concept of Normal Proxies, which extend objects with appropriate normals for improved grasp detection and grasp stability. An expert review revealed that our interaction metaphors allow for an intuitive and reliable assessment of several functionalities of objects found in a car interior. Follow-up user studies showed that overall task performance and usability are similar for CAVE and HMD environments. For larger objects and more gross manipulation, using the CAVE without employing a virtual hand representation is preferred, but for more fine-grained manipulation and smaller objects, the HMD turns out to be beneficial.
机译:虚拟环境中的自然交互是对汽车产品开发过程中的功能方面进行虚拟验证的关键要求。自然互动是人们在现实中遇到的隐喻:用手直接操纵对象。为了实现这种自然交互,我们提出了一个伪物理隐喻,它既可以提供现实的交互作用,又可以提供满足工业应用需求的鲁棒性。我们对典型汽车场景中最常见的对象类型的分析指导了一组精致的抓取启发法的开发,以支持多只手和用户基于手指的鲁棒交互。对象对用户手指运动做出反应的行为基于伪物理模拟,该模拟还考虑了各种类型的受约束对象。在处理现实情况时,我们必须引入“法线代理”的概念,该概念使用适当的法线扩展对象以改善抓握检测和抓握稳定性。专家评论显示,我们的交互作用隐喻可以直观,可靠地评估汽车内部发现的物体的几种功能。后续的用户研究表明,CAVE和HMD环境的总体任务性能和可用性相似。对于较大的对象和更多的粗略操作,首选使用不使用虚拟手表示的CAVE,但是对于更细粒度的操作和较小的对象,HMD则是有益的。

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