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Distributed control system using a remote distributed object model for 1.8-GeV synchrotron radiation beamlines at TSRf

机译:使用远程分布式对象模型的TSRf 1.8 GeV同步加速器辐射束线的分布式控制系统

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摘要

A distributed control system has been developed to control synchrotron radiation beamlines for the 1.8-GeV storage ring at Tohoku Synchrotron Radiation Facility (TSRF), Tohoku University, which has 50 beamlines for soft X-ray optics/microscopy, lithography, and biomaterial research. The system is composed of outlying nodes and remote operator consoles connected to a network. Each beamline is controlled by its own outlying node independently of adjacent beamlines in accordance with physics experimental requirements. The control system protects ultra-high vacuum components of the beamline and the storage ring by closing valves/shutters upon detecting a vacuum failure. The system was implemented using a distributed object model, Java remote method invocation (RMI). The control system provides information on the operation of the beamlines to remote clients such as operator consoles over the network in order to operate the TSRF. The design and implementation of the distributed control system as well as the control scheme for the synchrotron radiation beamlines at TSRF are described in this paper.
机译:东北大学的东北同步加速器辐射设施(TSRF)已开发出一种分布式控制系统来控制1.8-GeV存储环的同步加速器辐射束线,该系统具有50条用于软X射线光学/显微镜,光刻和生物材料研究的束线。该系统由外围节点和连接到网络的远程操作员控制台组成。根据物理实验要求,每条射束线都由其自己的外部节点控制,而与相邻的射束线无关。该控制系统通过在检测到真空故障时关闭阀门/百叶窗,从而保护束线和存储环的超高真空组件。该系统是使用分布式对象模型Java远程方法调用(RMI)来实现的。控制系统通过网络向远程客户端(例如,操作员控制台)提供有关束线操作的信息,以操作TSRF。本文介绍了分布式控制系统的设计和实现,以及TSRF同步辐射束线的控制方案。

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