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Design and Implementation of Haptic Tele-mentoring over the Internet

机译:互联网上触觉远程指导的设计与实现

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Haptic Tele-mentoring refers to an educational technique in which the mentor can teach the mentee, in a hand-by-hand manner over communication networks, through the coupling of two haptic devices. Essentially, the realization of tele-mentoring relies on the efficient transmission of haptic information, such that either end of the network can sense and/or impart forces. A few of obstacles in developing the tele-mentoring applications over the internet are network delay, jitter, and packet loss. These impairments potentially affect the stability of the tele-mentoring system and degrade the feeling of guiding. This paper analyzes the design and implementation constraints of the system, as well as the simulation and experimental results. To compensate for the network latency, a novel approach based on the behaviors of the human arm trajectory is proposed to lower the overshoot so as to improve the overall system stability. The experimental results show the effectiveness of the anti-overshoot algorithm.
机译:触觉远程指导是指通过两个触觉设备的耦合,在其上通过耦合来逐步地通过两种触觉设备来教导辅导员的教育技术。基本上,远程指导的实现依赖于高效传输触觉信息,使得网络的任一端可以感测和/或赋予力。在互联网上开发远程指导应用的障碍是网络延迟,抖动和数据包丢失。这些损害可能影响远程辅导系统的稳定性,并降低指导的感觉。本文分析了系统的设计和实现约束,以及模拟和实验结果。为了补偿网络延迟,提出了一种基于人臂轨迹行为的新方法,以降低过冲,以提高整体系统稳定性。实验结果表明了抗过冲算法的有效性。

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