基本信息
杨天宇  男  硕导  中国科学院深圳先进技术研究院
电子邮件: ty.yang@siat.ac.cn
通信地址: 南山区学苑大道1068号
邮政编码:

研究领域

1、特种光纤设计与研究


2、光纤及传感应用


3、介入手术机器人

招生信息

非常欢迎有光学/通信/计算机/材料背景的优秀博士生、硕士生、博士后加入团队。

如有意向,请发送简历及相关材料至邮箱:ty.yang@siat.ac.cn。

教育背景与工作经历

2024-01--中国科学院深圳先进技术研究院   副研究员
2023-04--2024-01   中国科学院深圳先进技术研究院   助理研究员
2021-04--2023-04   中国科学院深圳先进技术研究院   博士后
2017-07--2021-04   悉尼科技大学   博士学位
2013-09--2016-04   合肥工业大学   硕士学位
2008-09--2012-07   合肥工业大学   学士学位

近五年发表论文

1. J. Wen, T. Xi, T.-Y. Yang*, Z. Zheng, L. Lan, B. Yang, J. Han, R. Zhu, C. Yang*, Y. Dong, and H. Liu, “A Two-Photon 3D printed fiber optic ultrasonic sensor with Lateral-Force resistance for detection in High-Voltage environments,” Optics & Laser Technology, vol. 192, 114032, Oct. 4 2025. (SCI,共同通讯)

2. X. Zhang, X. Zhang, Z. Chen, T.-Y. Yang*, S. Ma*, R. Xu, and H. Liu, “High-precision fiber optic temperature monitoring system based on FBG-GaAs dual-mode collaborative measurement,” Optics Express, vol. 33, no. 8, pp. 41328-41341, Sep. 22 2025. (SCI,共同通讯)

3. X. Xiong, X. Zhang, S. Ma, X. Wang, C. Liu, Y. Lou, J. Wu, T.-Y. Yang*, H. Liu*, and Y. Dong*, “Multi-Peak Detection Algorithm for FBG Array Sensing Based on Self-Adaptive Thresholding,” Optics Express, vol. 33, no. 13, pp. 27753–27766, June 23 2025. (SCI,共同通讯)

4. S. Dong,T.-Y. Yang, Y. Lou, D. Luo, B. Yang, H. Liu, J. Wu*, and Y. Dong*, “A High-Precision Miniature 3D Tactile Force Sensor Based on Fiber Bragg Grating for Minimally Invasive Surgery,” IEEE Transactions on Instrumentation and Measurement, vol. 74, pp. 1–10, May 28 2025. (SCI,共同一作)

5. S. Dong, S. Ma, T. Zhou, Y. Lou, X. Xiong, K. Wei, D. Luo, J. Wu, H. Liu, R. Tao*, T.-Y. Yang*, and Y. Dong, “A Miniaturized FBG Tactile Sensor for the Tip of a Flexible Ureteroscope,” Sensors, vol. 25, no. 9, Apr. 29 2025. (SCI,共同通讯)

6. S. Fu, S. Dong, H. Shen, Z. Chen, G. Ma, M. Cai, C. Huang, Q. Peng, C. Bai, Y. Dong, H. Liu, T.-Y. Yang*, and T. Xu*, “Multifunctional Magnetic Catheter Robot with Triaxial Force Sensing Capability for Minimally Invasive Surgery,” Research, vol. 8, Apr. 24 2025. (SCI,共同通讯)一单位

7. X. Zhang, S. Dong, Z. Chen, R. Xu, H. Liu, T.-Y. Yang*, Z. Ren*, and Y. Dong, “Demodulation Method for GaAs Fiber-Optic Temperature Sensing Based on Reference Filter,” IEEE Sensors Journal, vol. 25, no. 8, pp. 13281–13293, Apr. 15 2025. (SCI,共同通讯)一单位

8. S. Dong, X. Zhang, Y. Lou, D. Luo, J. Wu*, R. Tao*, H. Liu*, T. Yang, and Y. Dong, “Miniature FBG force sensor capable of effectively resisting lateral forces,” Optics Express, vol. 33, no. 4, pp. 6581–6596, Feb. 10 2025. (SCI)

9. Z. Liu, S. Dong, R. Chen, Z. Zhou, Z. Ren, H. Liu, Y. Dong*, and T.-Y. Yang*, “A Hollow-Core Anti-Resonant Fiber Multi-Objective Multi-Modal Optimization Assisted by a Proxy Model Combined With Clustering Algorithm,” Journal of Lightwave Technology, vol. 43, no. 2, pp. 815–823, Jan. 15 2025. (SCI,共同通讯)

10. J. Wen, T.-Y. Yang*, Z. Zheng, T. Xi, Z. Liu, H. Wei, L. Lan, W. Deng, H. Liu, C. Yang*, and Y. Dong, “Two-photon 3D-printed Fabry-Pérot interferometric sensor for ultrasensitive high-frequency ultrasonic detection,” Journal of Lightwave Technology, vol. 43, no. 2, Jan. 15 2025. (SCI,共通通讯) ISSN: 1558-2213

11. S. Dong, Z. Liu, Y. Lou, D. Luo, J. Wu, B. Yang, H. Liu, T.-Y. Yang*, and Y. Dong*, “A High-Precision Miniature Triaxial FBG Force Sensor for Detecting Tissue Anomalies,” Journal of Lightwave Technology, vol. 42, no. 17, Sep. 1, 2024. (SCI,共通通讯) ISSN: 1558-2213

12. Z. Liu, R. Chen, J. Wen, Z. Zhou, Y. Dong*, and T.-Y. Yang*, “Optimization of low-loss, high birefringence parameters of a hollow-core anti-resonant fiber with back-propagation neural network assisted hyperplane segmentation algorithm,” Optics Express, vol. 32, no. 17, pp. 29638-29655, Aug. 12, 2024. (SCI,共通通讯)  ISSN:1094-4087

13. Z. Liu, S. Dong, L. Zhang, H. Liu, Z. Zhou, Y. Dong*, and T.-Y. Yang*, “Exhaustive Design and Statistical Analysis of HC-ARFs Based on Geometric Modeling,” Journal of Lightwave Technology, vol. 42, no. 15, pp. 5293-5301, Aug. 1, 2024. (SCI,共通通讯) ISSN: 1558-2213

14. T.-Y. Yang, X. Zhang, Z. Liu, T. Xi, R. Xu*, H. Liu, L. Zhang, Z. Zhan*, Z. Wang, and Y. Dong, “Thermal Optical Fiber Sensor Based on GaAs Film for Fluid Velocity Measurement,” IEEE Sensors Journal, vol. 24, no. 8, pp. 12358-12365, Apr. 15 2024. Electronic ISSN: 1558-1748 (SCI)

15. Z. Cao, T.-Y. Yang, Z. Lu, Q. Zhang, D. Luo, Q. Tian, W. Li, P. Guo*, Y. Dong*, Z. Liu*, “Effect of Pattern on Resolution of Tactile Image Sensor Based on Deep Learning,” IEEE Sensors Journal, vol. 24, no. 7, pp. 11670-11677, 1 Apr. 2024. (SCI)

16. Z. Lu, Z. Liu, X. Zhang, Y. Liang, Y. Dong*, and T. -Y. Yang*, “3D force identification and prediction using deep learning based on a Gelsight-structured sensor,” Sensors and Actuators A: Physical, vol. 367, p. 115036, Mar. 1, 2024. (SCI,共通通讯) Online ISSN: 1873-3069

17. Z. Yang, S. Liu, T.-Y. Yang*, G. Wu, Y. Liang, Y. Dong, “Segmental sensor weighting accuracy evaluation method for fiber optic shape sensing,”  IEEE Sensors Journal, vol. 23, no. 22, pp. 27307-27315, Nov. 15 2023. (SCI,通讯) Electronic ISSN: 1558-1748

18. Z. Liu, J. Wen, Z. Zhou, Y. Dong*, T.-Y. Yang*, “A highly birefringent photonic crystal fiber based on a central trielliptic structure: FEM Analysis,” Physica Scripta, vol. 98, no. 11, p. 115607, Num. 11 2023. (SCI,共通通讯) Online ISSN: 1402-4896

19. Z. Liu, J. Wen, L. Zhang, Z. Zhou, Y. Dong*, T.-Y. Yang*, “Multiple designs with broad applicability for enhancing birefringence in low-loss terahertz HC-ARF,” Results in Physics, vol. 52, p. 106793, Aug. 6 2023. (SCI,共通通讯) Online ISSN: 2211-3797

20. Z. Lu, T.-Y. Yang*, Z. Cao, D. Luo, Q. Zhang, Y. Liang, and Y. Dong*, “Optical soft tactile sensor algorithm based on multi-scale ResNet,” IEEE Sensors Journal, vol. 23, no. 10, pp. 10731-10738, May 15, 2023. (SCI,共同通讯) Electronic ISSN: 1558-1748

21. W. Liu, T.-Y. Yang*, Y. Shi, J. Wu, and Y. Dong*, “Combined Interrogation Algorithm of Phase Function and Minimum Mean Square Error for Fiber-optic Fabry-Perot Micro-pressure Sensors based on White Light Interference,” Journal of Lightwave Technology, vol. 41, no. 10, pp. 3241-3248, May 15, 2023. (SCI,共同通讯) ISSN: 1558-2213

22. Z. Liu, J. Wen, Z. Zhou, Y. Dong*, and T.-Y. Yang*, “A highly birefringent photonic crystal fiber with three rows of circular air holes,” Photonics, vol. 10, no. 5, p. 527, May 4, 2023. (SCI,共同通讯) ISSN: 2304-6732

23. Y. Lou, T.-Y. Yang*, D. Luo, J. Wu, and Y. Dong*, “A Novel Catheter Distal Contact Force Sensing for Cardiac Ablation Based on Fiber Bragg Grating with Temperature Compensation,” Sensors, vol. 23, no. 5, p. 2866, March 6, 2023. (SCI,共同通讯) ISSN: 1424-8220

24. W. Liu, T.-Y. Yang, Y. Shi, J. Wu, and Y. Dong*, “White light interference demodulation of optical fiber Fabry-Perot micro-pressure sensors based on the Karhunen-Loeve transform and singular value decomposition,” Optics Express, vol. 30, no. 4, pp. 5618-5633, Feb. 14, 2022. (SCI, 共同一作)

25. S. Liu, T.-Y.Yang*, L. Zhang, M. Tian, and Y. Dong*, “An intensity demodulated refractive index sensor based on a hollow-core anti-resonant fiber,” Journal of Physics D: Applied Physics, vol. 55, p. 155107, Jan. 24, 2022. (SCI,共同通讯)

26. L. Zhang, Z. Zhu, T.-Y. Yang*, W. Chen, and Y. Dong, “A Demodulation Scheme Based on Measuring Interference Fringe Visibility With a Highly Birefringent Fiber Based Michelson Interferometer,” IEEE Photonics Journal, vol. 13, no. 4, pp. 6800205,  Jun. 30, 2021. (SCI,通讯)

27. S. Liu, L. Zhang, M. Tian, T.-Y. Yang*, and Y. Dong, “Epsilon negative-based, broadband single-polarization single-mode hollow core anti-resonant photonic crystal fiber,” Optics Express, vol. 29, no. 10, pp. 15664-15677,  May 10, 2021. (SCI,通讯)

28. T.-Y. Yang, C. Ding, R. W. Ziolkowski, and Y. J. Guo, “High sensitivity core-shell structure (CSS)-based fiber sensor for monitoring analytes in liquids and gases,” Journal of Lightwave Technology, vol. 39, no. 10, pp. 3319-3329, May 15, 2021. (SCI)

29. T.-Y. Yang, L. Zhang, Y. Shi, S. Liu, and Y. Dong, “A highly birefringent photonic crystal fiber for terahertz spectroscopic chemical sensing,” Sensors, vol. 21, no. 5, pp. 1-12, March 1, 2021. (SCI)

30. T.-Y. Yang, C. Ding, R. W. Ziolkowski, and Y. J. Guo, “An epsilon-near-zero (ENZ) based, ultra-wide bandwidth terahertz single-polarization single-mode photonic crystal fiber,” Journal of Lightwave Technology, vol. 39, no. 1, pp. 223-232, 2021. (SCI)

专利信息

1. 杨天宇,董玉明,石云杰,一种温度和流速测量系统及方法,发明专利,初审,CN202111525677.3

2. 董玉明,杨天宇,石云杰,一种光纤流速计及流速测量方法,发明专利,初审,CN202111525566.2

3. 董玉明,刘维,杨天宇,石云杰,一种法布里-珀罗腔测微压的解调方法,发明专利,初审,CN202111489006.6

4. 娄宇阳,董玉明,杨天宇,力传感方法、光感应力传感器及力传感系统,发明专利,初审,CN202211378479.3

5. 杨天宇,杨子东,刘泽源,董玉明,液体流速测量装置及测量方法,发明专利,初审,CN202211379112.3

6. 杨天宇,娄宇阳,刘泽源,董玉明,一种冠脉血流量测量方法和测量系统,发明专利,初审,CN202211203004.0

近五年主持或参加的项目/课题

1. 深圳市科技创新委员会,纵向项目,SGG20201103091401005, 深圳市技术公关面上项目,2021-06 至 2023-06, 200万元,结题,院内负责人

2. 中科院深圳先进技术研究院,人才培养项目,2021 年度院优秀青年创新基金 C 档资助 -- 杨天宇,2022-03 至 2023-12, 10 万元,结题,主持

3. 中国博士后科学基金会,博士后科学基金项目,2022M713291, 中国博士后科学基金第 71 批面上资助 ,2022-08 至 2024-08, 8 万元,结题,主持

4. 深圳市科技创新委员会,纵向项目,SGG20220831103402004, 深圳市技术公关重点项目,2022-11 至 2025-10, 600 万元,申请验收,参与

5. 企业委托, 横向项目,特种光纤光缆及光纤传感联合实验室,2022-11 至 2025-11, 300 万元,在研,参与

6. 国家自然科学基金委员会,青年科学基金项目,62205364, 基于介电近零材料的空芯反谐振光纤双折射增强及单偏振单模特性研究,2023-01 至 2025-12, 30 万元,结题,主持

7. 深圳市科技创新委员会,人才培养项目,CBS20221008093250082, 深圳市优秀科技创新人才培养项目博士启动项 -介电近零材料对光子晶体光纤传播常数偏振差异增强的研究,2023-04 至 2025-04, 30 万元,结题,主持

8. 深圳市科技创新委员会,纵向项目,JZD20230923114601003, 深圳市科技重大专项,2024-01 至 2025-12, 200 万元,在研,参与

9. 深圳市医学研究专项资金管理委员会, 纵向项目,D2404001,应用转化型-医疗器械研制与开发项目,2025-01至2027-12,600 万元,在研,参与

10. 国家自然科学基金委员会,国家重点划青年科学家项目,2025YFF0523500, 2025-12 至 2030-12, 300 万元,在研,参与

11. 广州市科学技术局,广州市科技计划项目重点研发计划,2025B01J2002, 海上风电柔性直流换流阀状态检测与故障诊断技术研究,2025-04 至 2028-03, 100 万元,在研,单位负责人

12.深圳市科技创新委员会,纵向项目,深圳市重点产业研发计划,2025-11 至 2028-12, 1500 万元,在研,单位负责人

合作情况

与新加坡南洋理工大学、悉尼科技大学南京大学、合肥工业大学、安徽大学等国内外高校合作紧密