机器人远程触发实验室:架构、设计和实现挑战

Shriguru Nayak, Prashanth Vakrani, A. Purohit, G. N. S. Prasanna
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引用次数: 4

摘要

在线教育正因新技术而发生革命性的变化,它能够触及数百万人,为每个人、每个地方带来教育的最终承诺。随着这种趋势的变化,在线实验室由于其可访问性,成本和最先进的基础设施而越来越受欢迎。机器人远程触发实验室基础设施是机器人和机电系统领域的一个在线实验室。在本文中,我们讨论了实验室基础设施,架构,在设计,实施和部署过程中面临的挑战以及提出和实施的解决方案。远程触发实验室的挑战是独一无二的:涉及远程触发的机电运动。此外,音频/视频反馈提供给用户,因为它提供了机器人机械运动能力的清晰概念。一种新型的机器人仿真器是远程触发实验室中一种独特的设备,用于远程学习和模拟复杂的机器人。本文还讨论了该实验室基础设施建设过程中面临的挑战。
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Remote Triggered Lab for Robotics: Architecture, Design and Implementation Challenges
On-line education is being revolutionized by new technologies, capable of reaching millions of people with the ultimate promise of education for everyone and everywhere. With this change in trend, online laboratories are gaining popularity due to their accessibility, cost and state of the art infrastructure. The Remote Triggered Lab infrastructure for robotics is one such online laboratory for robotics and electromechanical systems domain. In this paper, we discuss about lab infrastructure, architecture, challenges faced during design, implementation and deployment along with proposed and implemented solutions. The challenges of the Remote Triggered Lab are unique: with remote triggered electromechanical motion being involved. In addition, audio/video feedback is provided to the user since it provides a clear idea of mechanical motion capability of robots. A novel robot emulator designed using bank of shafts is a unique facility in the Remote Triggered Lab to learn and simulate complex robots remotely. Challenges faced during the development of this lab infrastructure are also discussed in this paper.
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