空间流体实验的多模态相互作用

Ge Yu, Ji Liang, Lili Guo
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引用次数: 3

摘要

为了在空间遥科学地面设施中提供真实的“虚拟存在”和自然的人机界面,提出了一种新的多模态交互策略,用于空间遥科学实验中连续多步操作过程。由于与地面不同的流体性质,空间中的流体首先被建模为数据驱动的基于物理的组合动态粒子,并在CAVE和Oculus Rift的3D立体场景中进行渲染。然后提出了一种基于局部优化的深度聚类的单通道语音分离方法,从混合语音环境中恢复两个或多个独立的语音信号。实现了语音识别和语音合成,实现了语音远程控制。提出了基于Leap Motion体感控制的任务-命令分层交互方案和一系列可理解手势的识别算法,以减少心理工作量。最后,将上述交互界面集成到远程科学实验系统中。结果表明,与传统的交互方式相比,所提出的多模态交互方式能够提供更高效、自然和直观的用户体验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-Modal Interaction for Space Telescience of Fluid Experiments
In this paper, a novel multi-modal interaction strategy for sequential multi-step operation processes in the space telescience experiments is proposed to provide a realistic 'virtual presence' and natural human-computer interface at the telescience ground facility. Due to the different fluid properties from the ground, the fluid in space is modeled as data-driven combined physical-based dynamic particles and rendered in 3D stereoscopic scenario in the CAVE and Oculus Rift at first. A single-channel speech separation method based on Deep Clustering with local optimization is proposed then to recover two or more individual speech signals from the mixed speech environment. Also, the speech recognition and the speech synthesis are both realized to make telecommands by voice. The task-command hierarchical interaction solution and the recognition algorithm of a series of understandable hand(s) gestures for somatosensory control with Leap Motion is proposed next for the less mental workload. Finally, the above interaction interfaces are integrated into the telescience experiment system. The results show the proposed multi-modal interaction method can provide a more efficient, natural and intuitive user experience compared with traditional interaction.
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