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HEPS增强器及输运线真空控制系统设计与实现

Design and Implementation of the Vacuum Control System for HEPS Booster and Transport Line

  • 摘要: 针对高能同步辐射光源(HEPS)增强器及输运线真空系统设备数量多、分布广、真空阀门控制逻辑复杂的特点,设计了HEPS增强器及输运线真空控制系统。系统采用横河PLC来实现阀门的控制和联锁逻辑,并将PLC中的变量转换为EPICS PV;真空度数据通过TCP/IP协议读出,其IOC运行于嵌入式工控机;触摸屏用于阀门的本地手动控制,控制程序采用iX Developer开发;整个系统的远程监测界面采用Control System Studio开发。系统软硬件均采用了模块化设计,提高了系统的灵活性、可复用性和可维护性。通过任一站点的触摸屏均可控制所有站点的阀门,解决了因设备分布广操作与维护不便的问题。真空控制系统于2023年5月完成安装和调试,并正式投入运行,系统运行稳定可靠,其联锁响应时间约为18 ms,满足设计要求。

     

    Abstract: A vacuum control system was designed for the High Energy Photon Source(HEPS) booster and transport line, which features a large number of devices, wide distribution, and complex vacuum valve control logic. The system utilizes Yokogawa PLC for valve control and interlock logic, converting PLC variables into EPICS PVs. Vacuum data is retrieved by the IOC running on embedded industrial control computers via the TCP/IP protocol. Touch screens are employed for local valve control, and the GUI is developed with iX Developer. The operator interface developed using Control System Studio enables remote monitoring of the vacuum system. The system's modular design for both software and hardware enhances flexibility, reusability, and maintainability. Touch screens at any station enable centralized control of all valve operations, effectively overcoming the challenges posed by the widespread distribution of equipment. Since its installation and commissioning in May 2023, the vacuum control system has operated reliably with an interlock response time of approximately 18 ms, meeting all design requirements.

     

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