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加速器是一个多学科交叉、工艺要求高、综合性很强的系统,对控制系统提出了很高的要求。为了保证加速器可靠稳定运行,切实保障设备人身安全,需进行加速器控制系统架构相关研究开发。1方案设计控制系统三层架构由应用服务层(IOC)、控制单元层(CU)、终端层(OPI)组成。由于加速器运行现场会有电离辐射,环境恶劣,方案设计层间数据传输完全实现数字化,由此可带来诸多好处。例如,数据传输较模拟传输方式有了更好的传输精度,抗干扰性也明显增强,数据的共享发布也更为灵
Accelerator is a multi-disciplinary, high technology requirements, comprehensive system, the control system put forward high requirements. In order to ensure the reliable and stable operation of the accelerator and effectively protect the personal safety of the equipment, research and development related to the accelerator control system architecture needs to be carried out. A program design control system three-tier architecture by the application service layer (IOC), the control unit layer (CU), the terminal layer (OPI) composition. Due to ionizing radiation at the site of accelerator operation and poor environment, data transmission between plan design layers is fully digitized, which brings many benefits. For example, data transmission has better transmission accuracy than analog transmission, anti-interference is also significantly enhanced, and data sharing is more spiritual