Elimination of Cross-dimensional Artifacts in the Multi-Dof Time Domain Passivity Approach for Time-delayed Teleoperation with Haptic Feedback

Xiao Xu, E. Steinbach
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引用次数: 7

Abstract

This paper extends the state-of-the-art multi-Dof time domain passivity approach (TDPA), leading to more flexible usability and improved user experience in time-delayed teleoperation. TDPA is an effective method to guarantee stable teleoperation in the presence of communication delay. As the TDPA has gained increasing attention, several studies have focused on extending the originally proposed one-degree-of-freedom (1-Dof) TDPA to multi-Dof. In this paper, we describe that the existing multi-Dof TDPA introduces additional distortions which do not appear in the 1-Dof TDPA. More specifically, motion in one direction can cause distortion (force fluctuation and position drift) even perpendicular to the motion. We name this phenomenon cross-dimensional artifact (CDA). The CDA leads to disturbed teleoperation control and degraded user experience. To address this issue, we first offer a deep analysis of this CDA. Then, we propose a projection-based multi-Dof TDPA extension and suggest a corresponding adaptation to eliminate the CDA. Subjective experiments show that the proposed adaptation is able to remove the distortions caused by the CDA and improve the user experience for sliding tasks and perceiving object surface features.
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基于多自由度时域无源方法的触觉反馈延时遥操作跨维伪影消除
本文对当前最先进的多自由度时域无源方法(TDPA)进行了扩展,使延时远程操作的可用性更加灵活,用户体验得到了改善。TDPA是在存在通信延迟的情况下保证远程操作稳定的有效方法。随着TDPA受到越来越多的关注,一些研究将最初提出的单自由度(1自由度)TDPA扩展到多自由度。在本文中,我们描述了现有的多点TDPA引入了额外的失真,而这些失真在1点TDPA中没有出现。更具体地说,一个方向上的运动甚至会导致垂直于运动的变形(力波动和位置漂移)。我们将这种现象命名为跨维度工件(CDA)。CDA导致遥操作控制受到干扰,用户体验下降。为了解决这个问题,我们首先对CDA进行深入分析。然后,我们提出了一种基于投影的多自由度TDPA扩展,并提出了相应的自适应来消除CDA。主观实验表明,提出的自适应方法能够消除CDA引起的畸变,提高滑动任务和感知物体表面特征的用户体验。
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