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Human Perception-Based Data Reduction for Haptic Communication in Six-DoF Telepresence Systems

机译:六自由度网真系统中基于人类感知的触觉通信数据约简

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In this paper, a human perception-based data reduction method is suggested to reduce the number of packets transmitted in 6-degrees-of-freedom (DoF) telehaptic systems; specifically in haptic-enabled telepresence. The algorithm relies on knowledge from human haptic perception in order to reduce the number of packets transmitted without compromising transparency. Several distance metrics are also discussed to best examine the acuity of human perception in detecting haptic distortion when data reduction is performed in 6-DoF settings. A validation of the proposed haptic data reduction technique is performed under normal network conditions as well as in the presence of network-induced time delay and packet loss. Statistical significance tests (using Friedman's nonparametric ANOVA, and Wilcoxon signed-rank tests) were carried out to determine the appropriate multivariate human haptic perceptual thresholds (force, torque, orientation, etc.) required to minimize the number of packets transmitted while preserving the immersiveness of the 6-DoF telehaptic environment. It was observed that the suggested algorithm can significantly reduce haptic data traffic with little or no influence on the quality of haptic-enabled telepresence interaction.
机译:本文提出了一种基于人类感知的数据约简方法,以减少在6自由度(DoF)遥觉系统中传输的数据包数量。特别是在支持触觉的网真中。该算法依赖于人类触觉感知的知识,以减少传输的数据包数量而不影响透明性。还讨论了几种距离度量,以最好地检查在6自由度设置中执行数据缩减时检测感知触觉失真的敏锐度。在正常的网络条件下以及在网络引起的时间延迟和数据包丢失的情况下,对提出的触觉数据缩减技术进行了验证。进行了统计显着性检验(使用弗里德曼的非参数方差分析和Wilcoxon符号秩检验),以确定在保持沉浸感的同时最小化传输的数据包数量所需的适当的多元人类触觉感知阈值(力,扭矩,方向等)。 6自由度触觉环境。观察到,所提出的算法可以显着减少触觉数据流量,而对触觉使能的网真交互的质量几乎没有影响。

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