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Virtual and Remote Laboratory Framework Development for Engineering Technology Education - A Case Study

机译:工程技术教育的虚拟和远程实验室框架开发 - 以案例研究

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Virtual and Remote Laboratory (VR-Lab) is an inevitable necessity for Internet enabled education in Engineering Technology and other STEM fields due to the effectiveness, flexibility and cost-saving. The VR-Lab research at Texas Southern University (TSU) is to develop a software and hardware framework that allows users to simulate the experiments virtually and control physical instruments remotely via the Internet with minimal to zero-installation beyond a typical web browser. Currently, multiple web based experiments for Data Communication, DC circuit, Active Vibration Control and Digital Signal Processing (DSP) subjects are available for experimentation and coursework integration. To allow rapid development, National Instruments (NI) software and hardware is used for the programming, data acquisition, and interaction with remote devices. The programming of virtual experiments is primarily done with NI LabVIEW v8.6 as well as Java. To reduce or eliminate the need for browser plug-ins or third party software in order to operate, the VR-Lab framework uses Web 2.0 technology. The goal of the VR-Lab framework is to provide cross-browser and client-side plug-in free experiment environment for engineering and technology education. A remote Smart Vibration Platform experiment which is good for teaching active vibration control is used to demonstrate how to integrate a remote experiment into the VR-Lab framework.
机译:虚拟和远程实验室(VR-LAB)是由于有效,灵活性和节省成本,因此在工程技术和其他干田中的互联网教育的必然必要性。德克萨斯州南方大学(TSU)的VR-LAB研究是开发一种软​​件和硬件框架,允许用户实际上通过Internet微远程控制物理仪器,以便超出典型的Web浏览器超出零安装。目前,用于数据通信,DC电路,主动振动控制和数字信号处理(DSP)科目的多个基于Web的实验可用于实验和课程集成。为了允许快速发展,国家仪器(NI)软件和硬件用于编程,数据采集和与远程设备的交互。虚拟实验的编程主要使用NI LabVIEW V8.6以及Java完成。为了减少或消除对浏览器插件或第三方软件的需求以运行,VR-Lab框架使用Web 2.0技术。 VR-Lab框架的目标是为工程和技术教育提供跨浏览器和客户端插件的免费实验环境。一种良好的教学主动振动控制的远程智能振动平台实验用于演示如何将远程实验集成到VR-Lab框架中。

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