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Improving operational reliability of Indus accelerators by implementation of EPICS based Control System for Microtron injector

机译:通过实施基于EPICS的Microtron喷射器控制系统来提高Indus加速器的运行可靠性

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The Experimental Physics and Industrial Control System (EPICS)[1] is a comprehensive set of software tools for creating control applications. The home-grown VME infrastructure at RRCAT, along with LabVIEW was used for the control of common injector of Indus rings i.e. Microtron. Increasing demands and continuous evolution of the system entailed upgrade of the control system. An EPICS based control system is recently commissioned and deployed for Microtron that renders enhanced SCADA functionalities. The SoftIOC running on Linux, talks to a VME station, an oscilloscope, a digital teslameter, a temperature scanner and an RF synthesizer on RS232 and TCP/IP. The OPI runs EDM on Linux. This paper discusses the operational improvements achieved in the control system by upgrading to EPICS. The reliability of the system is further enhanced by modules like Fault Diagnostics and Cathode Emission Auto-correction. The fault diagnostics module predicts anomalies in the system behavior and eases fault troubleshooting. The cathode emission auto-correction is a closed loop control for electron emission from the cathode. This paper also presents a system optimization perspective on hardware and software aspects chosen for the new system, and the design & implementation constraints on Windows and Linux.
机译:实验物理和工业控制系统(EPICS) [1] 是用于创建控制应用程序的一整套软件工具。 RRCAT自主开发的VME基础设施与LabVIEW一起用于控制Indus环(即Microtron)的通用喷射器。不断增长的需求和系统的不断发展必然导致控制系统的升级。最近已为Microtron调试并部署了基于EPICS的控制系统,该系统可增强SCADA功能。运行在Linux上的SoftIOC与RS232和TCP / IP上的VME站,示波器,数字特斯拉计,温度扫描仪和RF合成器进行通讯。 OPI在Linux上运行EDM。本文讨论了通过升级到EPICS在控制系统中实现的操作改进。故障诊断和阴极排放自动校正等模块进一步提高了系统的可靠性。故障诊断模块可以预测系统行为异常,并简化故障排除过程。阴极发射自动校正是从阴极发射电子的闭环控制。本文还针对新系统选择的硬件和软件方面以及Windows和Linux的设计和实现约束条件,提出了系统优化的观点。

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