Design and implementation of module fault interlock and protection system of HIAF-BRing power supply prototype

Q4 Engineering 强激光与粒子束 Pub Date : 2021-07-15 DOI:10.11884/HPLPB202133.210034
T.D. Yulian, Wu Fengjun, W. Xiaojun, Yan Hongbin, Huang Yuzhen, Lin Yuhang, Li Jiqiang, Zhang Shuai, Zhang Huajian, Zhuang Fangfang, Gao Daqing
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Abstract

Power supply prototype in High Intensity heavy ion Accelerator Facility-Booster Ring (HIAF-BRing) adopts the scheme of full energy and fast cycle storage pulse power supply topology. Its multi modules are connected in series and parallel pattern, and the power reaches megawatt level. Due to the high power and large scale of the power supply, a module fault interlock protection system based on Programmable Logic Controller (PLC), interlock boards and Field Programmable Gate Array (FPGA) is designed and implemented to protect the power supply in operation. In this paper, first, a design of double redundant module fault interlock is introduced. Second, the logic implemented in PLC is described. Third, the work about FPGA is given. Finally, the system is tested in three aspects: the responsive time of the power supply interlock loop, the total time from controller error occurrence to interlock finish, and the equipment fault response. The result shows that the module fault interlock system can action sensitively, timely and reliably in case of fault occurrence, which meets the requirements of the power supply prototype in HIAF-BRing.
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HIAF-BRing电源样机模块故障联锁保护系统的设计与实现
高能重离子加速器装置-助推环(HIAF-BRing)电源样机采用全能量快周期存储脉冲电源拓扑方案。其多模块采用串并联方式连接,功率达到兆瓦级。针对电源功率大、规模大的特点,设计并实现了一种基于可编程控制器(PLC)、联锁板和现场可编程门阵列(FPGA)的模块故障联锁保护系统。本文首先介绍了一种双冗余模块故障联锁的设计。其次,描述了PLC中实现的逻辑。第三,给出了FPGA的相关工作。最后,从电源联锁回路的响应时间、控制器发生错误到完成联锁的总时间、设备故障响应三个方面对系统进行了测试。结果表明,该模块故障联锁系统在故障发生时动作灵敏、及时、可靠,满足了haf - bring电源样机的要求。
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强激光与粒子束
强激光与粒子束 Engineering-Electrical and Electronic Engineering
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