| 参考文献:[1] Dong Fengzhong, Kan Ruifeng, Liu Wenqing, et al. Tunable diode laser absorption spectroscopic technology and its applications in air quality monitoring[J]. Chinese Journal of Quantum Electronics, 2005, (03): 315-25.董凤忠,阚瑞峰,刘文清, 等. 可调谐二极管激光吸收光谱技术及其在大气质量监测中的应用 [J]. 量子电子学报, 2005, (03): 315-25.[2] Nie Wei, Kan Ruifeng, Yang Chenguang, et al. Research Progress on the Application of Tunable Diode Laser Absorption Spectroscopy[J]. Chinese Journal of Laser, 2018, 45(09): 9-29.聂伟, 阚瑞峰, 杨晨光, 等. 可调谐二极管激光吸收光谱技术的应用研究进展 [J]. 中国激光, 2018, 45(09): 9-29.[3] Bolshov M A, Kuritsyn Y A, Romanovskii Y V. Tunable diode laser spectroscopy as a technique for combustion diagnostics [J]. Spectrochimica Acta Part B: Atomic Spectroscopy, 2015, 106: 45-66.[4] Liu S. Towards aerial natural gas leak detection system based on TDLAS [J]. Proceedings of SPIE, 2014, 9299: 92990X.[5] Valentine D L, Kastner M, Wardlaw G D, et al. Biogeochemical investigations of marine methane seeps, Hydrate Ridge, Oregon [J]. Journal of Geophysical Research: Biogeosciences, 2005, 110(G2).[6] Maximilian Lackner. Tunable Diode Laser Absorption Spectroscopy (TDLAS) in the process industries-a review[J]. Reviews in Chemical Engineering, 2007, 23(2): 65-147.[7] Seufert J, Fischer M, Legge M, et al. DFB laser diodes in the wavelength range from 760 nm to 2.5 microm [J]. Spectrochimica acta Part A, Molecular and biomolecular spectroscopy, 2004, 60(14): 3243-7.[8] Ma Chao. Design and Implementation of High-precision Semiconductor Laser Control System[D]. Qufu: Qufu Normal University, 2014.马超. 高精度半导体激光器控制系统的设计与实现 [D]. 曲阜: 曲阜师范大大学2014.[9] Chen Lianghui, Yang Guowen, Liu Yuxian. Development of Semiconductor Lasers[J]. Chinese Journal of Laser, 2020, 47(05): 13-31.陈良惠, 杨国文, 刘育衔. 半导体激光器研究进展 [J]. 中国激光, 2020, 47(05): 13-31.[10] Jia Yuanzheng. Research on high precision digital temperature control system [D]. Jinan: Shangdong University, 2018 (in Chinese).贾远征. 高精度数字温控系统的研究 [D]. 济南: 山东大学 2018.[11] Luo Liang, Hu Jiacheng, Wang Chanyuan, et al. Design of high-precision driving power and temperature control circuit for semiconductor laser[J]. Laser Technology, 2017, 41 (02): 200-204.罗亮,胡佳成,王婵媛等. 高精度半导体激光器驱动电源及温控电路设计 [J]. 激光技术, 2017, 41 (02): 200-204.[12] Xin Wenhui, Fang Lin, Fan Jianxin, et al. Double Closed-Loop Temperature Control System for Semiconductor Laser[J]. Measurement&Control Technology, 2022, 41 (09): 31-36+49.辛文辉,方林,樊建鑫等. 半导体激光器双闭环温度控制系统 [J]. 测控技术, 2022, 41 (09): 31-36+49.[13] He Chungui , Zhang Yujun, Liu Guohua, et al. Design and experimental study on temperature control circuit of semiconductor laser[J]. Electronic Measurement Technology, 2017, 40(08): 27-31+41.贺春贵, 张玉钧, 刘国华, et al. 半导体激光器温度控制电路设计及实验研究 [J]. 电子测量技术, 2017, 40(08): 27-31+41.[14] Liu Zeli. High-precision DFB Laser Temperature Control System Used in Gas Detection Field[J]. Laser Journal, 2014, 35 (12): 82-84.刘泽利. 用于气体检测的高精度DFB激光器温控系统 [J]. 激光杂志, 2014, 35 (12): 82-84.[15] Jiang Jianguo, Zhao Yu, Liu Songbin. A laser drive current and temperature control system for TDLAS methane detection[J]. Journal of Chongqing University, 2018, 41 (02): 53-60.姜建国,赵宇,刘松斌. 用于TDLAS甲烷检测的激光器电流驱动与温控系统 [J]. 重庆大学学报, 2018, 41 (02): 53-60.[16] Jin Xiaoli, Su Jing, Jin Pixian, et al. Study on A High-Precision Digital Temperature-Control System for All-Solid-State Single-Frequency Green Laser [J]. Chinese Journal of Lasers, 2015, 42(09): 80-86.靳晓丽, 苏静, 靳丕铦, 等. 全固态单频绿光激光器高精度数字温度控制系统的研究 [J]. 中国激光, 2015, 42 (09): 80-86.[17] Li Hongyan, Liu Hanfei, Wang Weifeng, et al. Design and experiment of DFB gas laser driver circuit based on STM32[J]. Journal of Xi'an University of Science and Technology, 2021, 41(01): 152-9.李红岩, 刘韩飞, 王伟峰, 等. 基于STM32的DFB气体激光器驱动电路设计与实验 [J]. 西安科技大学学报, 2021, 41(01): 152-9.[18] Lineykin S, Ben-Yaakov S. Analysis of thermoelectric coolers by a spice-compatible equivalent-circuit model [J]. IEEE power electronics letters, 2005, 3(2): 63-6.[19] Liu Ning, Chai Tianyou. An Optimal Tuning Method of PID Controller Parameters[J]. Acta Automatica Sinica, 2023, 49(11): 2272-85.刘宁, 柴天佑. PID控制器参数的优化整定方法 [J]. 自动化学报, 2023, 49(11): 2272-85. |