發(fā)明專利:
[1]劉慶文,何祖源,陳典. 基于分布式光纖聲波傳感系統(tǒng)的振動傳感方法[P]. CN110375841A,2019-10-25.
[2]何祖源,劉慶文,陳典. 消除分布式光纖聲波系統(tǒng)中衰落噪聲的方法[P]. CN107990970B,2019-10-15.
[3]劉慶文,何祖源,王辰,陳典. 基于光纖的油氣管道泄漏監(jiān)測系統(tǒng)[P]. CN110285333A,2019-09-27.
[4]劉慶文,何祖源,趙雙祥. 高精度光纖光柵應(yīng)變測量系統(tǒng)[P]. CN109752033A,2019-05-14.
[5]何祖源,劉慶文,陳嘉庚. 激光線寬壓縮方法及系統(tǒng)[P]. CN109286124A,2019-01-29.
[6]劉慶文,何祖源,翟玉瑤. 無機械運動部件的激光雷達系統(tǒng)[P]. CN108983256A,2018-12-11.
[7]劉慶文,何祖源,趙雙祥. 光纖光柵溫度/應(yīng)變傳感系統(tǒng)及其解調(diào)方法[P]. CN108120525A,2018-06-05.
[8]何祖源,劉慶文,陳典. 消除分布式光纖聲波系統(tǒng)中衰落噪聲的方法[P]. CN107990970A,2018-05-04.
[9]何祖源,劉慶文,陳典,樊昕昱. 分布式光纖傳感系統(tǒng)[P]. CN205981438U,2017-02-22.
[10]何祖源,劉慶文,陳典,樊昕昱. 可消衰落噪聲的分布式光纖振動傳感系統(tǒng)[P]. CN205898286U,2017-01-18.
[11]何祖源,劉慶文,陳嘉庚,樊昕昱. 用于溫度與應(yīng)變同時測量的光纖光柵式傳感系統(tǒng)[P]. CN205898164U,2017-01-18.
[12]何祖源,劉慶文,陳典,樊昕昱. 分布式光纖傳感系統(tǒng)及其振動檢測定位方法[P]. CN106092305A,2016-11-09.
[13]何祖源,劉慶文,陳典,樊昕昱. 可消衰落噪聲的分布式光纖振動傳感系統(tǒng)及其解調(diào)方法[P]. CN106052842A,2016-10-26.
[14]何祖源,劉慶文,陳嘉庚,樊昕昱. 用于溫度與應(yīng)變同時測量的光纖光柵式傳感系統(tǒng)及方法[P]. CN105953825A,2016-09-21.
[15]杜江兵,何祖源,馬麟,張文甲,樊昕昱,劉慶文,陶冶夢. 基于循環(huán)回路的高靈敏度光纖電流傳感裝置[P]. CN205539130U,2016-08-31.
[16]何祖源,劉慶文,樊昕昱,陳典. 基于頻率合成的光頻域反射裝置[P]. CN205453695U,2016-08-10.
[17]杜江兵,何祖源,馬麟,張文甲,樊昕昱,劉慶文,陶冶夢. 基于循環(huán)回路的高靈敏度光纖電流傳感裝置[P]. CN105699732A,2016-06-22.
[18]何祖源,劉慶文,樊昕昱,陳嘉庚. 亞納應(yīng)變級多點復用光纖光柵準靜態(tài)應(yīng)變傳感系統(tǒng)[P]. CN205192442U,2016-04-27.
[19]何祖源,劉慶文,樊昕昱,陳典. 基于頻率合成的光頻域反射方法及系統(tǒng)[P]. CN105490738A,2016-04-13.
[20]何祖源,樊昕昱,劉慶文,杜江兵,馬麟,汪帥. 基于光頻域反射計的振動檢測裝置[P]. CN205120239U,2016-03-30.
[21]何祖源,劉慶文,樊昕昱,陳嘉庚. 亞納應(yīng)變級多點復用光纖光柵準靜態(tài)應(yīng)變傳感系統(tǒng)[P]. CN105352446A,2016-02-24.
[22]何祖源,劉慶文,樊昕昱,陳嘉庚. 光纖光柵應(yīng)變傳感系統(tǒng)[P]. CN205037875U,2016-02-17.
[23]何祖源,劉慶文,樊昕昱,陳嘉庚. 光纖光柵應(yīng)變傳感系統(tǒng)[P]. CN105136057A,2015-12-09.
[24]何祖源,劉慶文,樊昕昱,杜江兵,馬麟,陳嘉庚. 高精度光纖光柵溫度傳感系統(tǒng)[P]. CN204855022U,2015-12-09.
[25]何祖源,樊昕昱,劉慶文,杜江兵,馬麟,汪帥. 基于光頻域反射計的振動檢測裝置及其方法[P]. CN105067103A,2015-11-18.
[26]何祖源,劉慶文,樊昕昱,杜江兵,馬麟,陳嘉庚. 高精度光纖光柵溫度傳感系統(tǒng)[P]. CN105021310A,2015-11-04.
[27]何祖源,杜江兵,樊昕昱,劉慶文. 布拉格光纖光柵應(yīng)變傳感器的靈敏度增強解調(diào)裝置[P]. CN204064257U,2014-12-31.
[28]何祖源,杜江兵,樊昕昱,劉慶文. 布拉格光纖光柵溫度傳感器[P]. CN204064506U,2014-12-31.
[29]何祖源,杜江兵,樊昕昱,劉慶文,許聃. 超高速超大帶寬四波混頻連續(xù)線性掃頻激光源[P]. CN203932663U,2014-11-05.
[30]劉慶文,何祖源,樊昕昱,杜江兵,張朕. 基于非垂直式光纖光柵的高壓電場精確測量方法及裝置[P]. CN104049124A,2014-09-17.
[31]何祖源,杜江兵,樊昕昱,劉慶文. 布拉格光纖光柵溫度傳感器及其靈敏度增強方法[P]. CN104034443A,2014-09-10.
[32]何祖源,杜江兵,樊昕昱,劉慶文,許聃. 超高速超大帶寬四波混頻連續(xù)線性掃頻激光源[P]. CN104022435A,2014-09-03.
[33]何祖源,杜江兵,樊昕昱,劉慶文. 布拉格光纖光柵應(yīng)變傳感器的靈敏度增強解調(diào)方法及裝置[P]. CN104019760A,2014-09-03.
[34]劉慶文,何祖源,樊昕昱,杜江兵,張朕. 基于支架式光纖光柵的高壓電場精確測量方法及裝置[P]. CN104020360A,2014-09-03.
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出版專著:
資料更新中……
發(fā)表英文論文:
1. Qingwen Liu, Zuyuan He, and Tomochika Tokunaga, " Sensing the Earth Crustal Deformation with Nano-Strain Resolution Fiber-Optic Sensors," Optics Express, Vol. 23, No. 11, pp. A428-A436, 2015
2. Qingwen Liu, Xinyu Fan, and Zuyuan He, " Time-Gated Digital Optical Frequency Domain Reflectometry with 1.6-m Spatial Resolution over Entire 110-km Range," Optics Express, Vol. 23, No. 20, pp. 25988-25995, 2015
3. Dian Chen, Qingwen Liu, and Zuyuan He. "Phase-Detection Distributed Fiber-Optic Vibration Sensor without Fading-Noise Based on Time-Gated Digital OFDR." Optics Express, Vol. 25, No. 7, pp. 8315-8325, 2017
4. Dian Chen, Qingwen Liu, Xinyu Fan, and Zuyuan He. "Distributed Fiber-Optic Acoustic Sensor with Enhanced Response Bandwidth and High Signal-to-Noise Ratio." Journal of Lightwave Technology, Vol. 35, No. 10, pp. 2037-2043, 2017
5. Qingwen Liu, Mengxin Wu, Jiageng Chen, and Zuyuan He. “Coherent Pound-Drever-Hall Technique for High Resolution Fiber-optic Sensors at Low Probe Power.” IEEE Journal of Lightwave Technology, DOI: 10.1109/JLT.2017.2749335, 2017
6. Zuyuan He, Qingwen Liu, Jiageng Chen, and Tomochika Tokunaga. “Ultrahigh Resolution Fiber Bragg Grating Sensors for Quasi-static Crustal Deformation Measurement.” IEEE Journal of Lightwave Technology, Vol. 35, No. 16, pp. 3334-3346, DOI: 10.1109/JLT.2016.2591724, 2017 (Tutorial Review)
7. Jiageng Chen, Qingwen Liu, and Zuyuan He. “Time-Domain Multiplexed High Resolution Fiber Optics Strain Sensor System Based on Temporal Response of Fiber Fabry-Perot Interferometers.” Optics Express, Vol. 27, No. 18, pp. 21914-21925, 2017
8. Xinyu Fan, Guangyao Yang, Shuai Wang, Qingwen Liu, Zuyuan He, “Distributed Fiber-Optic Vibration Sensing Based on Phase Extraction from Optical Reflectometry,” Journal of Lightwave Technology, Vol. 35, No. 16, pp. 3281-3288, Aug. 2017 (Invited Paper)
9. Jiageng Chen, Qingwen Liu, and Zuyuan He, “High Resolution Simultaneous Measurement of Strain and Temperature Using pi-Phase-Shifted FBG in Polarization Maintaining Fiber,” Journal of Lightwave Technology, Vol. 35, No. 22, pp. 4838-4844, Nov. 2017
10. Dian Chen, Qingwen Liu, and Zuyuan He, "High-fidelity Distributed Fiber-optic Acoustic Sensor with Fading Noise Suppressed and Sub-meter Spatial Resolution," Optics Express, Vol. 26, No. 13, pp. 16138-16146, Jun. 2018
11. Shuangxiang Zhao, Qingwen Liu, Jiageng Chen, and Zuyuan He, "pε-Resolution fiber grating sensor with adjustable measurement range and ultralow probe power," IEEE Photonics Technology Letters, Vol. 31, No. 1, pp. 19-22, Jan. 2019 [PDF]
12. Jiageng Chen, Qingwen Liu, and Zuyuan He, "Feedforward laser linewidth narrowing scheme using acousto-optic frequency shifter and direct digital synthesizer," IEEE/OSA Journal of Lightwave Technology, Vol. 37, No. 18, pp. 4657 - 4664, Sep. 2019
13. Shuangxiang Zhao, Qingwen Liu, Jiageng Chen, and Zuyuan He, "Pico-strain resolution multiplexed fiber grating sensor array interrogated with mode-locked laser," Journal of lightwave technology, Vol. 37, No. 18, pp. 4838 - 4843, Sep. 2019
14. Shuangxiang Zhao, Qingwen Liu, Jiageng Chen, and Zuyuan He, "Realization of sub-nano-strain static resolution with injection-locking between two fiber laser sensors," Journal of lightwave technology, Vol. 37, No. 13, pp. 3166-3172, Jul. 2019
15. Dian Chen, Qingwen Liu, and Zuyuan He, "108-km Distributed acoustic sensor with 220-pepsilon/radicHz strain resolution and 5-m spatial resolution," Journal of Lightwave Technology, Vol. 37, No. 18, pp. 4462 - 4468, Sep. 2019
16. Dian Chen, Qingwen Liu, Yifan Wang, He Li, and Zuyuan He, "Fiber-optic distributed acoustic sensor based on a chirped pulse and a non-matched filter," Optics Express, Vol. 27, No. 20, pp. 29415 - 29424, Sep. 2019
發(fā)表中文論文:
[1]王辰,劉慶文,陳典,李赫,梁文博,何祖源.基于分布式光纖聲波傳感的管道泄漏監(jiān)測[J].光學學報,2019,39(10):119-125.
[2]汪帥,王彬,劉慶文,杜江兵,樊昕昱,何祖源.超高空間分辨率光反射儀關(guān)鍵技術(shù)進展[J].光電工程,2018,45(09):45-55.
[3]何祖源,劉慶文,陳嘉庚.面向地殼形變觀測的超高分辨率光纖應(yīng)變傳感系統(tǒng)[J].物理學報,2017,66(07):178-189.
發(fā)表英文會議論文:
1. Qingwen Liu, Dian Chen, Xinyu Fan, and Zuyuan He, " Optical Frequency Domain Reflectometry with Synthesized Frequency Sweeping Technique," 2016 Conference on Lasers and Electro-Optics (CLEO), IEEE, 2016
2. Bin Wang, Xinyu Fan, Qingwen Liu, Jiangbing Du, and Zuyuan He, " Spatial Resolution Enhancement in Optical Coherence Domain Reflectometry Using High-order FWM Process," Asia Communications and Photonics Conference, Optical Society of America, 2016
3. Dian Chen, Qingwen Liu, Xinyu Fan, and Zuyuan He, " Fading-noise-free Distributed Fiber-optic Vibration Sensor Based on Time-gated Digital OFDR," Asia-Pacific Optical Sensors Conference, Optical Society of America, 2016
4. Jun Cao, Qingwen Liu, Xinyu Fan, and Zuyuan He, " Research on FBG Packaging Technique for Ultrahigh Resolution Strain Sensing," Asia-Pacific Optical Sensors Conference, Optical Society of America, 2016
5. Jin Chen, Xinyu Fan, Qingwen Liu, and Zuyuan He, " Polarization Sensitive Optical Coherence Domain Reflectometry using Mode-locked Laser as Optical Source," Asia-Pacific Optical Sensors Conference, Optical Society of America, 2016
6. Wang Shuai, Xinyu Fan, Qingwen Liu, and Zuyuan He, " Ultra-High-Resolution OTDR based on Linear Optical Sampling with Digital Dispersion Compensation," Asia-Pacific Optical Sensors Conference, Optical Society of America, 2016
7. Bin Wang, Xinyu Fan, Qingwen Liu, Jiangbing Du, and Zuyuan He, " Long-range Millimeter-resolution OFDR Based on 100 GHz Linear Frequency-sweep of Optical Source by Injection-locking Technique and Cascaded FWM Process," Asia-Pacific Optical Sensors Conference, Optical Society of America, 2016
8. Jiageng Chen, Qingwen Liu, Xinyu Fan, and Zuyuan He, " Fiber Optic Bending Sensor Based on Resonance Splitting of π-Phase-shifted FBG," Asia-Pacific Optical Sensors Conference, Optical Society of America, 2016
9. Tianjiao Li, Qingwen Liu, Dian Chen, Xinyu Fan, and Zuyuan He, " Improving Spatial Resolution of Time-gated Digital Optical Frequency Domain Reflectometry using Diode Laser Sources," Asia-Pacific Optical Sensors Conference, Optical Society of America, 2016
10. Bin Wang, Xinyu Fan, Guangyao Yang, Qingwen Liu, and Zuyuan He, " Millimeter-Resolution Long Range Optical Frequency Domain Reflectometry for Health Monitoring of Access Network," 42nd European Conference on Optical Communication (ECOC, Proceedings of. VDE), 2016
11. Bin Wang, Xinyu Fan, Shuai Wang, Guangyao Yang, Qingwen Liu, and Zuyuan He, " Phase Noise Mitigation for Long-range OFDR using Ultrafast Frequency Sweep," OptoElectronics and Communications Conference (OECC) held jointly with 2016 International Conference on Photonics in Switching (PS), 2016 21st, IEEE, 2016
12.Guangyao Yang, Xinyu Fan, Bin Wang, Qingwen Liu, and Zuyuan He, " Polarization Fading Elimination in Phase Extracted OTDR for Distributed Fiber-Optic Vibration Sensing ," Proc. Optoelectronics and Communications Conference (OECC2016) , Niigata, Japan, Jul. 2016
13.Jiageng Chen, Qingwen Liu, Xinyu Fan, and Zuyuan He, " Simultaneous Measurement of Strain and Temperature Using pi-Phase-shifted Fiber Bragg Grating on Polarization Maintaining Fiber ," Proc. Optoelectronics and Communications Conference (OECC2016) , Niigata, Japan, Jul. 2016
14.Shuai Wang, Xinyu Fan, Qingwen Liu, and Zuyuan He, " High-Repetition-Rate Dynamic Polarization Mode Dispersion Characterization Based on Linear Optical Sampling ," CLEO2016 , San Jose, US, May. 2016
15.Jiageng Chen, Qingwen Liu, Xinyu Fan, and Zuyuan He, " High Resolution Temperature and Strain Discrimination by Using π-phase-shifted Fiber Bragg Grating on Polarization Maintaining Fiber ," CLEO2016 , San Jose, US, May. 20162. Dian Chen, Qingwen Liu, Xinyu Fan, and Zuyuan He, " Distributed Fiber Optic Vibration Sensor with Enhanced Response Bandwidth and High Signal-to-Noise Ratio," 25th International Conference on Optical Fiber Sensors, International Society for Optics and Photonics, 2017
16. Bin Wang, Xinyu Fan, Qingwen Liu, and Zuyuan He, " Increasing Effective Sensing Points of Brillouin Optical Correlation Domain Analysis Using Four-Wave-Mixing Process," 25th International Conference on Optical Fiber Sensors, International Society for Optics and Photonics, 2017
17. Guangyao Yang, Xinyu Fan, Qingwen Liu, and Zuyuan He, " Increasing the Frequency Response of Direct-Detection Phase-Sensitive OTDR by Using Frequency Division Multiplexing," 25th International Conference on Optical Fiber Sensors, International Society for Optics and Photonics, 2017
18. Jiageng Chen, Qingwen Liu, and Zuyuan He, " Multiplexed Sub-Nano Resolution Quasi-Static Strain Sensor Based on Transient Response of Fabry-Perot Interferometers," 25th International Conference on Optical Fiber Sensors, International Society for Optics and Photonics, 2017
19. Mengxin Wu, Qingwen Liu, Jiageng Chen, and Zuyuan He, " Coherent Pound-Drever-Hall Technique for High Resolution Fiber Optic Strain Sensor at Very Low Light Power," 25th International Conference on Optical Fiber Sensors, International Society for Optics and Photonics, 2017
20. Shuai Wang, Xinyu Fan, Qingwen Liu, and Zuyuan He, " Hybrid Dual-comb Interferometer Using Electro-optic Comb and Free-running Femtosecond Laser," CLEO: Science and Innovations, Optical Society of America, 2017
21. Jiageng Chen, Qingwen Liu, Xinyu Fan, and Zuyuan He, " High Resolution Optical Fiber Sensor for Quasi-Static Strain Measurement by Strain-Temperature Discrimination," CLEO: Applications and Technology, Optical Society of America, 2017
22. Xiancheng Xia, Qingwen Liu, Dian Chen, Zuyuan He, “ Real-Time Data Processing Algorithm for Phase-Demodulation Distributed Fiber-optic Vibration Sensor with Signal-to-Noise Ratio over 30 dB,” International Conference on Optical Communications and Networks 2017 (ICOCN 2017), IEEE, Wuzhen (PRC), 2017
23. Ke Su, Xinyu Fan, Qingwen Liu, Zuyuan He, “ Multiplexed Fiber-optic Methane Sensor System with Auxiliary Weak Fiber Bragg Gratings Based on OTDR Measurement,” International Conference on Optical Communications and Networks 2017 (ICOCN 2017), IEEE, Wuzhen (PRC), 2017
24. Shuangxiang Zhao, Qingwen Liu, Jiageng Chen, Zuyuan He, “ Pico-Strain Resolution Fiber Grating Sensor with Ultralow Probe Power and Tunable Sensitivity,” 2018 Conference on Lasers and Electro-Optics (CLEO 2018), JW2A.173, Optical Society of America, May. 2018
25. Yuyao Zhai, Qingwen Liu, He Li, Dian Chen and Zuyuan He, “ Non-Mechanical Beam-Steer Lidar System Based on Swept-Laser Source,” 2018 Conference on Lasers and Electro-Optics (CLEO 2018), JTh2A.187, Optical Society of America, San Jose (US), May. 2018
26. Dian Chen, Qingwen Liu, and Zuyuan He, "Fading-suppressed Distributed Fiber-optic Acoustic Sensor with 0.8-m Spatial Resolution and 246-p$epsilonsurd$Hz Strain Resolution," 26th International Conference on Optical Fiber Sensors (OFS-26), TuE93, Optical Society of America, Lausanne (Switzerland), Sep. 2018
27. Yuyao Zhai, Qingwen Liu, He Li, Dian Chen and Zuyuan He, "Non-mechanical Beam-steer Lidar System Based on Swept-laser Source," 26th International Conference on Optical Fiber Sensors (OFS-26), ThE48, Optical Society of America, Lausanne (Switzerland), Sep. 2018
28. Shuangxiang Zhao, Qingwen Liu, Jiageng Chen and Zuyuan He, "Pico-strain Resolution Multiplexed Fiber Grating Sensor Array Using One Mode-locked Laser," 26th International Conference on Optical Fiber Sensors (OFS-26), Optical Society of America, Lausanne (Switzerland), Nov. 2018
29.Zuyuan He, Qingwen Liu, Xinyu Fan, Dian Chen, Shuai Wang, Guangyao Yang, " Fiber-optic distributed acoustic sensors (DAS) and applications in railway perimeter security ," Proc. SPIE. 10821, Advanced Sensor Systems and Applications VIII , Guilin, China, Oct. 2018
30.Mengshi Wu, Xinyu Fan, Qingwen Liu, and Zuyuan He, " Quasi-distributed Fiber-optic Acoustic Sensor using Ultra-weak Reflecting Point Array ," OFS , Laussane, Switzerland, Sep. 2018
31.Mengshi Wu, Xinyu Fan, Qingwen Liu, and Zuyuan He, " High performance distributed acoustic sensor based on ultra-weak FBG array ," 2018 IEEE International Instrumentation and Measurement Technology Conference (I2MTC) , Houston, US, May 2018
32. Jiageng Chen, Qingwen Liu, and Zuyuan He, "High resolution π-phase-shifted fiber Bragg grating demodulator using frequency swept DFB laser," CLEO 2019, JW2A.101, May. 2019
33. Shuangxiang Zhao, Qingwen Liu, Jiageng Chen, and Zuyuan He, "Sub-nε static resolution fiber laser sensor," CLEO 2019, AF1K.2, San Jose (US), May. 2019, Oral
34. Dian Chen, Qingwen Liu, and Zuyuan He, "Distributed fiber-optic acoustic sensor with long sensing range over 100 km and sub-nano strain resolution," 2019 IEEE International Instrumentation and Measurement Technology, Auckland (NZ), May. 2019
35. Biaozhi Li, Qingwen Liu, and Zuyuan He, "Spectrum-depth analysis based on optical coherence tomography," OECC 2019, WC3-1, Fukuoka (JP), Jul. 2019, Oral