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Robotic laboratory for distance education

机译:远程教育机器人实验室

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摘要

This project involves the construction of a remote-controlled laboratory experiment that can be accessed by online students. The project addresses a need to provide a laboratory experience for students who are taking online courses to be able to provide an in-class experience. The chosen task for the remote user is an optical engineering experiment, specifically aligning a spatial filter. We instrument the physical laboratory set up in Tucson, AZ at the University of Arizona. The hardware in the spatial filter experiment is augmented by motors and cameras to allow the user to remotely control the hardware. The user interacts with a software on their computer, which communicates with a server via Internet connection to the host computer in the Optics Laboratory at the University of Arizona. Our final overall system is comprised of several subsystems. These are the optical experiment set-up, which is a spatial filter experiment; the mechanical subsystem, which interfaces the motors with the micrometers to move the optical hardware; the electrical subsystem, which allows for the electrical communications from the remote computer to the host computer to the hardware; and finally the software subsystem, which is the means by which messages are communicated throughout the system. The goal of the project is to convey as much of an in-lab experience as possible by allowing the user to directly manipulate hardware and receive visual feedback in real-time. Thus, the remote user is able to learn important concepts from this particular experiment and is able to connect theory to the physical world by actually seeing the outcome of a procedure. The latter is a learning experience that is often lost with distance learning and is one that this project hopes to provide.
机译:该项目涉及远程实验室实验的建设,可供在线学生访问。该项目致力于为在线课程的学生提供实验室体验,以提供课堂体验。远程用户选择的任务是光学工程实验,特别是对准空间滤镜。我们为亚利桑那大学图森市的物理实验室提供仪器。通过使用电机和摄像头来增强空间过滤器实验中的硬件,以允许用户远程控制硬件。用户与他们计算机上的软件进行交互,该软件通过Internet连接与服务器通信,该服务器与亚利桑那大学光学实验室中的主机相连。我们最终的整体系统由几个子系统组成。这些是光学实验设置,这是一个空间滤镜实验;机械子系统,将电机与千分尺连接以移动光学硬件;电气子系统,它允许从远程计算机到主机的电气通信与硬件;最后是软件子系统,这是在整个系统中传递消息的方式。该项目的目标是通过允许用户直接操纵硬件并实时接收视觉反馈来传达尽可能多的实验室体验。因此,远程用户能够从该特定实验中学习重要概念,并能够通过实际看到过程的结果将理论与物理世界联系起来。后者是一种学习经验,通常会因远程学习而丢失,并且是该项目希望提供的一种学习经验。

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