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JET FIR Interferometer laser operation and interlock system upgrade to an open automation system

机译:JET FIR干涉仪激光操作和联锁系统升级为开放式自动化系统

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We report on the selection, implementation and successful demonstration of a new automated laser control system for JET's Far Infrared Interferometer, a diagnostic essential for machine protection. The new control system allows all laser subsystems and sensors to be interlocked and operated remotely in a precise and pre-programed manner, functionalities that are essential for reliable operation with the additional access restrictions foreseen in the upcoming D-T operation of JET. Our selection process gave priority to known technologies that conform to industry standards and have been proven within the JET operational environment. Weighting was also given to the accessibility of the software interface and the scalability of the technology.The new laser control system was installed and tested at the end of 2017. It comprises an Industrial PC(IPC), running Windows Embedded Standard 7 and a real-time Programmable Logic Controller (PLC) using the proprietary protocol TwinCAT developed by Beckhoff. This technology is extremely compact (DIN rail mountable), scalable, modular and does not require additional wiring between modules. A particularly noteworthy feature is the ability to run applications written in high level languages which interact with the PLC. In this example, the main code for control and monitoring of the system was developed in Python using Finite State Machine algorithms.This technology has applications beyond laser control in a wide variety of application areas where reliable and robust remote operation and easy maintenance/service is a priority. Indeed, similar systems have been reliably used in the JET Plant Essential Monitoring System since 2015.
机译:我们报告了JET远红外干涉仪的新型自动激光控制系统的选择,实施和成功演示,该系统对机器保护至关重要。新的控制系统允许所有激光子系统和传感器以精确的预编程方式互锁和远程操作,这些功能对于可靠的运行是必不可少的,同时在即将进行的JET D-T操作中将预见到额外的访问限制。我们的选择过程优先考虑符合行业标准且已在JET操作环境中得到证明的已知技术。还对软件界面的可访问性和技术的可扩展性给予了权衡。新的激光控制系统于2017年底进行安装和测试。该系统包括运行Windows Embedded Standard 7的工业PC(IPC)和实际的使用Beckhoff开发的专有协议TwinCAT的实时可编程逻辑控制器(PLC)。该技术非常紧凑(可安装在DIN导轨上),可扩展,模块化,并且不需要模块之间的额外布线。一个特别值得注意的功能是能够运行与PLC交互的高级语言编写的应用程序。在此示例中,使用有限状态机算法在Python中开发了用于控制和监视系统的主要代码,该技术在激光控制领域的应用广泛,可用于可靠而强大的远程操作以及易于维护/维护的各种应用领域优先权。实际上,自2015年以来,类似的系统已在JET工厂基本监控系统中可靠地使用。

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