An experimental study of lossy compression in a real telepresence and teleaction system

Verena Nitsch, B. Farber, L. Geiger, P. Hinterseer, Eckehard Steinbach
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引用次数: 16

Abstract

High network requirements of multiple degrees of freedom haptic data exchange represent a challenge in modern telepresence and teleaction systems. This study presents a systematic evaluation of a psychophysics-based approach to lossy haptic data compression proposed in the literature: the deadband approach and its extension which introduces additional signal model based prediction. In an experimental study, the effects of these approaches on packet rate reduction, perceived interface quality, and relevant task performance criteria were investigated in a three degrees of freedom telepresence and teleaction system. The results indicate that the extended approach did not lead to significant data reduction and adversely affected perceived interface quality as well as task performance. Without prediction, the deadband approach showed excellent rate reduction performance without adversely affecting perceived interface quality and most task performance criteria. We conclude from our study that the combined deadband and prediction approach is not practical for a telepresence and teleaction system with the used control structure, while the deadband compression approach alone exceeded expectations.
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真实临场感和远程操作系统中有损压缩的实验研究
多自由度触觉数据交换的高网络要求是现代远程呈现和远程操作系统面临的一个挑战。本研究对文献中提出的一种基于心理物理学的有损触觉数据压缩方法进行了系统的评估:死带方法及其扩展,其中引入了基于预测的附加信号模型。在一项实验研究中,研究了这些方法在三自由度远程呈现和远程操作系统中对分组速率降低、感知接口质量和相关任务性能标准的影响。结果表明,扩展方法没有导致显著的数据减少,并对感知界面质量和任务性能产生不利影响。在没有预测的情况下,死带方法显示出出色的速率降低性能,而不会对感知界面质量和大多数任务性能标准产生不利影响。我们从研究中得出结论,结合死带和预测方法对于使用控制结构的远程呈现和远程操作系统是不实用的,而单独使用死带压缩方法则超出了预期。
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