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哈尔滨工业大学 自动化测试与控制系,黑龙江 哈尔滨 150001
收稿日期:2008-06-04,
修回日期:2008-07-23,
网络出版日期:2009-03-25,
纸质出版日期:2009-03-25
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刘炳国, 刘国栋, 浦昭邦, 庄志涛, 陈凤东. 惯性约束聚变束靶耦合的监测及精度分析[J]. 光学精密工程, 2009,17(3): 542-548
LIU Bing-guo, LIU Guo-dong, PU Zhao-bang, ZHUANG Zhi-Tao, CHEN Feng-Dong. Measurement and precision analysis on alignment of laser and target in ICF[J]. Editorial Office of Optics and Precision Engineering, 2009,17(3): 542-548
刘炳国, 刘国栋, 浦昭邦, 庄志涛, 陈凤东. 惯性约束聚变束靶耦合的监测及精度分析[J]. 光学精密工程, 2009,17(3): 542-548 DOI:
LIU Bing-guo, LIU Guo-dong, PU Zhao-bang, ZHUANG Zhi-Tao, CHEN Feng-Dong. Measurement and precision analysis on alignment of laser and target in ICF[J]. Editorial Office of Optics and Precision Engineering, 2009,17(3): 542-548 DOI:
为了提高惯性约束聚变实验中高功率激光驱动装置束靶耦合的精度
介绍了几种束靶耦合监测方法
包括靶室外直接监测
靶室内直接监测
靶室内基于共轭原理的传感器监测等。分析了各种方法的优缺点
并重点对基于光学共轭原理的传感器的耦合精度进行了研究
分析了图像测量误差
CCD保护玻璃引入的误差
调焦导轨运动时引入的误差及传感器标定装校时引入的误差。实验测试及精度分析表明
共轭式传感器引入的束靶耦合误差为10 m。采用这种基于光学共轭原理的传感器
可以实现大型激光驱动装置的快速、高精度束靶耦合。
To improve the alignment precision of laser beam and target for high power laser driving device in Inertia Confinement Fusion(ICF)
several kinds of laser beam aligning methods
such as inside chamber direct alignment method
outside chamber direct alignment method
and indirect alignment method with Laser and Target Alignment Sensor(LTAS) based on optical conjugate principle
were induced and their advantages and disadvantages were analyzed. Then
the precision of the last method including the image measuring error
the errors introduced by protective glass of CCD
the movement errors of guides and the calibration error of Laser and Target Alignment Sensor(LTAS) was discussed. The experiments and precision analysis indicated that the laser beam aligning precision induced by LTAS is 10 m
which shows proposed LTAS can rapidly and exactly align the laser and target of large-scale laser driving device.
BOEGE S J,BLISS E S,CHOCLE C J, et al.. NIF pointing and centering systems and target alignment using 351 nm laser source [J]. SPIE, 1997,3047:248-258.[2] 黄宏一,顾震,范滇元. 神光II装置的靶瞄准系统 . 中国激光, 1998,25(8):711-714. HUANG H Y, GU ZH, FAN D Y. Target collimating system for ShenGuang II Device . Chinese Journal Lasers, 1998,25(8):711-714.(in Chinese)[3] 刘炳国,宫娜,刘国栋,等. ICF靶场坐标系建立及其监测方法[J]. 光学 精密工程,2007,15(7):1070-1076. LIU B G,GONG N,LIU G D, et al.. The study for coordinate system of ICF shooting range and the monitoring instrument [J]. Opt. Precision Eng., 2007,15(7):1070-1076. (in Chinese)[4] 刘国栋,蔡丹,浦昭邦,等. 一种基于差动调焦的激光共轭引导传感器[J]. 光学技术,2005,31(5):746-748. LIU G D, CAI D, PU ZH B, et al.. A laser conjugation directing sensor based on differential focusing [J]. Optical Technique, 2005,31(5):746-748.(in Chinese)[5] 张舞杰,杨义路,李迪,等. 自动影像测量系统关键 算法研究[J]. 光学 精密工程,2006,14(2):294-301. ZHANG W J,YANG Y L,LI DI, et al.. Key algorithms of automatic image measurement system [J]. Opt. Precision Eng., 2006,15(2):294-301.(in Chinese)[6] 高策,乔彦峰. 光电经纬仪实时误差的修正[J]. 光学 精密工程,2007,15(6):846-850. GAO C,QIAO Y F. Real-time error-correction method for photoelectrical theodolite [J]. Opt. Precision Eng.,2007,15(6):846-850. (in Chinese)[7] 刘万里,王占奎,曲兴华,等. 机机载光电跟踪测量设激光跟踪测量系统跟踪转镜的误差分析[J]. 光学 精密工程, 2008,16(4):585-590. LIU W L,WANG ZH K,QU X H, et al.. Error analysis of tracking mirror for laser tracker system [J]. Opt. Precision Eng., 2008,16(4):585-590.(in Chinese)
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