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CiADS固态功率源的可用性设计与分析
引用本文:高鹏辉,王志军,孙列鹏,贾永智,秦元帅,何源,黄贵荣.CiADS固态功率源的可用性设计与分析[J].原子核物理评论,2018,35(3):287-293.
作者姓名:高鹏辉  王志军  孙列鹏  贾永智  秦元帅  何源  黄贵荣
作者单位:1.中国科学院近代物理研究所, 兰州 730000;
基金项目:国家自然科学基金资助项目(Y636030GJ0)
摘    要:ADS加速器面临的一大技术挑战是高可用性要求,进行固态功率源可用性设计是为ADS加速器的可用性设计与分析做准备。首先对CiADS的可用性要求进行了分配,固态功率源的分配结果为0.999;然后对固态功率源进行了初步可用性设计,分析的结果无法满足要求;最后对固态功率源进行了冗余设计,使用Reliasoft软件建立了固态功率源的可靠性框图,分析结果显示:满足一定的维修条件下,当其他元件的平均故障间隔时间(MTBF)达到171 702 h,25/28冗余设计可以满足0.999的可用性要求。One of the challenging technologies of ADS is the high availability requirement. The availability design of the solid-state amplifier is the preparation for ADS. Firstly the availability requirement of CiADS is proposed as 0.8. The distribution result of the solid-state amplifier is 0.999 according to this requirement. Then the availability result shows the preliminary design of solid-state amplifiers can not reach the availability requirement. At last the power loss is considered to build the k/N redundancy model of the main amplifier and the mean time between failure (MTBF) is calculated for various redundancy models. The reliability block diagram of the solid-state amplifier is set up by Reliasoft and the simulation results show that the 25/28 redundancy model can meet the requirement 0.999 when MTBF of other components reaches 171 702 hours with the certain maintenance.

关 键 词:ADS    加速器    固态功率源    可用性    可靠性    维修性
收稿时间:2018-03-19

Availability Designs and Analyses of Solid-state Amplifiers for CiADS
GAO Penghui,WANG Zhijun,SUN Liepeng,JIA Yongzhi,QIN Yuanshuai,HE Yuan,HUANG Guirong.Availability Designs and Analyses of Solid-state Amplifiers for CiADS[J].Nuclear Physics Review,2018,35(3):287-293.
Authors:GAO Penghui  WANG Zhijun  SUN Liepeng  JIA Yongzhi  QIN Yuanshuai  HE Yuan  HUANG Guirong
Affiliation:1.Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000, China;2.University of Chinese Academy of Sciences, Beijing 100049, China
Abstract:One of the challenging technologies of ADS is the high availability requirement. The availability design of the solid-state amplifier is the preparation for ADS. Firstly the availability requirement of CiADS is proposed as 0.8. The distribution result of the solid-state amplifier is 0.999 according to this requirement. Then the availability result shows the preliminary design of solid-state amplifiers can not reach the availability requirement. At last the power loss is considered to build the k/N redundancy model of the main amplifier and the mean time between failure (MTBF) is calculated for various redundancy models. The reliability block diagram of the solid-state amplifier is set up by Reliasoft and the simulation results show that the 25/28 redundancy model can meet the requirement 0.999 when MTBF of other components reaches 171 702 hours with the certain maintenance.
Keywords:ADS  accelerator  solid state amplifiers  availability  reliability  maintainability
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