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Construction of Experimental System SPIDAR-HS for Designing VR Guidelines Based on Physiological Behavior Measurement

机译:基于生理行为测量设计VR指南的实验系统蜘蛛侠的构建

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VR technology is still under development and only the evaluation of the performance and functions of VR devices is being studied. There are few studies that are as subjective and difficult to evaluate as the study of immersion in VR. Moreover, methods and indicators for evaluating this characteristic are still unclear. By evaluating this characteristic quantitatively, it seems that technological development for enhancing the immersive feeling in the virtual space will be greatly improved. Therefore, the final goal of this research is to clarify the relationship between sensory display (force, vision and auditory sense) and Sense of Agency (SoA) in VR environment through physiological behavior measurement. To achieve the final goal, the aim for this paper is to establish a human-scale VR environment and to prepare an environment in which the SoA can be evaluated. We conducted physiological behavior measurements on two tasks, which are the "ball-catching task" which consists of dropping a ball weighing 220 g from a height of 80 cm and catching it, and the "rod-tracking task" that consists of moving the rod so as not to touch the wall of a sinusoidal path. In the "ball-catching task," it was possible to evaluate the strength of force sense, and the evaluation of the slight force sense was carried out based on the "rod-tracking task."
机译:VR技术仍在开发中,仅研究了VR设备的性能和功能的评估。少数研究是主观的,并且难以评估VR浸没的研究。此外,评估该特征的方法和指标尚不清楚。通过定量评估这一特征,似乎将大大提高用于增强虚拟空间中的沉浸感的技术发展。因此,本研究的最终目标是通过生理行为测量阐明VR环境中的感官显示(力,视觉和听觉觉)与机构感(SOA)之间的关系。为了实现最终目标,本文的目的是建立人类规模的VR环境,并准备可以评估SOA的环境。我们对两项任务进行了生理行为测量,这是“滚珠捕捉任务”,该任务包括从80厘米的高度掉线并捕获它,以及由移动的“杆跟踪任务”。棒子以免触摸正弦路径的墙壁。在“球捕捉任务”中,有可能评估力的强度,并且基于“杆跟踪任务”进行轻微力量意义的评估。

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