[1] |
Wan Yuanxi, Li Jiangang, Liu Yong, et al. Overview of the present progress and activities on the CFETR[J]. Nuclear Fusion, 2017, 57: 102009. doi: 10.1088/1741-4326/aa686a
|
[2] |
Hemsworth R, Decamps H, Graceffa J, et al. Status of the ITER heating neutral beam system[J]. Nuclear Fusion, 2009, 49: 045006. doi: 10.1088/0029-5515/49/4/045006
|
[3] |
Song Yuntao, Wu Songtao, Li Jiangang, et al. Concept design of CFETR tokamak machine[J]. IEEE Transactions on Plasma Science, 2014, 42(3): 503-509. doi: 10.1109/TPS.2014.2299277
|
[4] |
胡纯栋, 梁立振, 谢远来, 等. CFETR中性束注入系统概念设计[J]. 核聚变与等离子体物理, 2022, 42(4): 388-392Hu Chundong, Liang Lizhen, Xie Yuanlai, et al. Conceptual design of neutral beam injection system for CFETR[J]. Nuclear Fusion and Plasma Physics, 2022, 42(4): 388-392
|
[5] |
Hu Chundong. Conceptual design of neutral beam injection system for EAST[J]. Plasma Science and Technology, 2012, 14(6): 567-572. doi: 10.1088/1009-0630/14/6/30
|
[6] |
胡纯栋, 许永建. EAST中性束注入器研制进展[J]. 核技术, 2015, 38: 110603Hu Chundong, Xu Yongjian. Development progresses of EAST neutral beam injector[J]. Nuclear Techniques, 2015, 38: 110603
|
[7] |
Hu Chundong, Xie Yahong, Xie Yuanlai, et al. Overview of development status for EAST-NBI system[J]. Plasma Science and Technology, 2015, 17(10): 817-825. doi: 10.1088/1009-0630/17/10/02
|
[8] |
赵远哲, 胡纯栋, 谢远来, 等. CFETR NBI控制系统概念设计[J]. 核电子学与探测技术, 2021, 41(6): 1066-1073Zhao Yuanzhe, Hu Chundong, Xie Yuanlai, et al. Conceptual design of CFETR NBI control system[J]. Nuclear Electronics & Detection Technology, 2021, 41(6): 1066-1073
|
[9] |
李洋, 胡纯栋, 郑长勇, 等. 射频负离子源分布式定时同步系统设计[J]. 核电子学与探测技术, 2021, 41(1): 178-182Li Yang, Hu Chundong, Zheng Changyong, et al. Design of distributed timing system for RF-driven negative ion source[J]. Nuclear Electronics & Detection Technology, 2021, 41(1): 178-182
|
[10] |
Liu Wei, Hu Chundong, Liang Lizhen, et al. Progress of the control system for negative ion source based neutral beam injector prototype at ASIPP[J]. Fusion Engineering and Design, 2021, 165: 112257. doi: 10.1016/j.fusengdes.2021.112257
|
[11] |
张亮, 王宾, 梁立振, 等. 中性束注入联锁保护系统设计[J]. 兰州文理学院学报(自然科学版), 2024, 38(3): 65-68Zhang Liang, Wang Bin, Liang Lizhen, et al. Design of neutral beam injection interlocking protection system[J]. Journal of Lanzhou University of Arts and Science (Natural Sciences), 2024, 38(3): 65-68
|
[12] |
李洋. 射频负离子源运行参数分析与性能预测研究[D]. 合肥: 中国科学技术大学, 2024Li Yang. Research on operation parameter analysis and performance prediction for RF-driven negative ion source[D]. Hefei: University of Science and Technology of China, 2024
|
[13] |
段练, 刘智民, 宋士花, 等. 基于WinCC的负离子源中性束电源状态监控系统设计[J]. 核科学与工程, 2023, 43(2): 481-487Duan Lian, Liu Zhimin, Song Shihua, et al. Design of state monitoring system of the NNBI power system based on WinCC[J]. Nuclear Science and Engineering, 2023, 43(2): 481-487
|
[14] |
李维斌, 王雅丽, 任青华, 等. 托卡马克脉冲电源实时控制系统设计[J]. 强激光与粒子束, 2019, 31: 096003Li Weibin, Wang Yali, Ren Qinghua, et al. Design of a real-time control system for pulse power supply in tokamak[J]. High Power Laser and Particle Beams, 2019, 31: 096003
|
[15] |
舒先来, 刘智民, 谢亚红, 等. 基于射频功率调节的负离子源束流反馈控制研究[J]. 强激光与粒子束, 2022, 34: 116002Shu Xianlai, Liu Zhimin, Xie Yahong, et al. Research on beam feedback control of negative ion source based on RF power regulation[J]. High Power Laser and Particle Beams, 2022, 34: 116002
|