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A LabVIEW approach to instrumentation for the TFTR bumper limiter alignment project

机译:TFTR保险杠限制器对齐项目的LabVIEW仪器化方法

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A project undertaken to measure the alignment of the TFTR (Tokamak Fusion Test Reactor) bumper limiter in relation to the toroidal magnetic field axis is discussed. The process involved the measurement of the toroidal magnetic field and the positions of the tiles that make up the bumper limiter. The basis for the instrument control and data acquisition system was LabVIEW. LabVIEW is a graphical programming system for developing scientific and engineering applications on a Macintosh. With LabVIEW, users create graphical software modules called virtual instruments instead of writing conventional text-based code. To measure the magnetic field, the control system acquired data from two nuclear magnetic resonance magnetometers while the toroidal field coils were pulsed. To measure the position of the tiles on the limiter, an instrumented mechanical arm was used inside the vessel. LabVIEW's graphical programming environment provided an easy transition from engineering-design block diagram to a VI block diagram, which made for speedy development. It also provided for quick and painless online systems integration, which proved to be essential to the timely completion of the project.
机译:讨论了用于测量TFTR(TOKAMAK融合测试反应器)保险杠限制器相关于环形磁场轴的对准的项目。该过程涉及环形磁场的测量和构成保险杠限制器的瓦片的位置。仪器控制和数据采集系统的基础是LabVIEW。 LabVIEW是一种用于在Macintosh上开发科学和工程应用的图形编程系统。使用LabVIEW,用户创建名为Virtual Instruments的图形软件模块,而不是编写基于文本的代码。为了测量磁场,控制系统在脉冲环形线圈的同时获取来自两个核磁共振磁力计的数据。为了测量限制器上的瓷砖位置,容器内部使用仪表机械臂。 LabVIEW的图形编程环境提供了从工程设计框图到VI块图的简单过渡,这为迅速开发制作。它还提供了快速无痛的在线系统集成,这被证明是对项目及时完成的​​必要条件。

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