基于EPICS的空间环境模拟与研究基础设施温度监测系统设计

Weiming Tong, Ze Xu, Xu Chu, Zhongwei Li
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引用次数: 0

摘要

空间环境仿真与研究基础设施(SESRI)是推动航天工业发展的重要技术之一,而离子加速器系统是SESRI中较为重要的子系统之一。针对离子加速器温度过高、长期运行影响电场稳定性的问题,设计了一种基于EPICS的离子加速器温度监测系统。本文首先分析了离子加速器的温度控制原理,根据离子加速器的特点,采用PID控制算法实现了离子加速器温度的鲁棒控制。其次,基于EPICS设计了控制系统总体方案,构建了EPICS运行环境,设计了IOC与底层设备之间的通信功能,实现了OPI人机交互。最后对系统的控制效果和运行进行了仿真。仿真结果表明,该系统具有良好的稳定性,能够控制离子加速器的温度,满足工程控制要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of temperature monitoring system for Space Environment Simulation and Research Infrastructure based on EPICS
Space Environment Simulation and Research Infrastructure (SESRI) is one of the important technologies to promote the development of aerospace industry, and the ion accelerator system is one of the more important subsystems in SESRI. Aiming at the problem that the temperature of the ion accelerator is too high and the stability of the electric field is affected by the long-term operation of the ion accelerator, this paper designs an ion accelerator temperature monitoring system based on EPICS. In this paper, the temperature control principle of the ion accelerator is firstly analyzed, and according to its characteristics, the robust control of the temperature of the ion accelerator is realized by using the PID control algorithm. Secondly, based on EPICS, the overall scheme of the control system is designed, the EPICS operating environment is built, the communication function between the IOC and the underlying equipment is designed, and the OPI human-computer interaction is realized. Finally, the control effect and operation of the system are simulated. The simulation results show that the system has good stability and can control the temperature of the ion accelerator to meet the project control requirements.
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