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黄薇

作者:    信息来源:    发布时间: 2021-09-26

黄薇,副教授,硕士生导师,2016年毕业于南开大学电子信息与光学工程学院,获得工学博士学位。招生类别及专业:硕导,计算机技术、人工智能、计算机科学与技术.电子邮箱:hw_tjut@vip.163.com  办公地址:8号楼307


主要研究方向:基于机器学习的光学特性预测与反向设计;优化算法;图像检测与分割

作为项目负责人或骨干人员参与国家科技部973计划项目、国家级和省部级自然科学基金、横向课题多项,主持国家和天津市级自然科学基金、教育部重点实验室基金、南开大学博士科研创新计划等多项;入选2017年天津市“131”创新型人才培养工程,天津市高校“青年后备人才支持计划”人选;担任《Optoelectronics Letters》期刊编委及多个国际高水平学术期刊(Optica、Optics Express等)审稿人;在SCI和EI收录的国际高水平学术期刊发表论文30余篇,授权发明专利和软著10余项。

主持的项目:

1、国家自然科学基金青年项目,“非圆对称多通道微结构光纤中轨道角动量模式耦合调控机理及应用研究”,2018-2020,主持;

2、天津市自然科学基金青年项目,“光纤轨道角动量光束传输色散补偿调控技术研究”2019-2022,主持;

3、国家自然科学基金青年项目,“注意力驱动的多通道胸水肿瘤细胞团块识别”,2018-2020,参与;

4、国家自然科学基金青年项目,“液芯光纤微流控中的反谐振光流作用增强机理及生物分子识别应用研究“,2019-2021,参与;

5、天津市自然科学基金重点项目,“基于光流控光子晶体光纤的模式调控和传感技术研究“,2014-2017,参与;

6、天津市自然科学基金青年项目,“功能化微结构光纤生物分子芯片技术与应用研究“,2018-2021,参与;

7、天津市教委科研计划项目,“多通道流式分子智能芯片及其癌症早期检测技术研究“,2018-2021,参与;

8、天津市光电传感器与传感网络技术重点实验室基金,“新型光子晶体光纤光栅辅助型模间干涉仪工作机理与应用研究“,2016-2018,主持;

9、横向课题,“深度学习计算框架及应用示范“,2017-2018,参与;

10、横向课题,“神经退行性疾病早期智能预警高级机器学习技术与示范应用”,2020,参与;

发表的论文:

1. Haibo Qin, Wei Huang*, Binbin Song, Shengyong Chen, Hybrid Method for Inverse Design of Orbital Angular Momentum Transmission Fiber based on Neural Network and Optimization Algorithms, IEEE Journal of Lightwave Technology, VOL. 40, NO. 17, 5974-5985, 2022;

2. Wei Huang*, Yue Xiong, Haibo Qin, Yan-ge Liu, Binbin Song, Shengyong Chen,Orbital angular momentum generation in a dual-ring fiber based on the phase-shifted coupling mechanism and the interference of supermodes,Optics Express, Vol.28 No.11, 16996-17009, 2020;

2. Wei Huang*, Yan-ge Liu, Zhi Wang, Binbin Song, Shengyong Chen,Dual-resonance-coupling and sensing characteristics in an all-solid photonic bandgap fiber interferometer based on LP01 cladding supermodes,IEEE Photonics Journal,Vol. 10 No. 3, 7103312, 2018;

3. Wei Huang*, Haibo Qin, Yue Xiong, Binbin Song, Shengyong Chen,Mechanism and characteristics of a tunable dispersion-compensating dual-ring microstructure fiber for different orbital angular momentum modes,Journal of the Optical Society of America A, Vol. 38, No. 2,229-236, 2021;

4. Wei Huang, Yan-ge Liu,* Zhi Wang, Wanchen Zhang, Mingming Luo, Xiaoqi Liu,Junqi Guo, Bo Liu, and Lie Lin, Generation and excitation of different orbital angular momentum states in a tunable microstructure optical fiber, Optics Express, Vol. 23, No. 26, 33741~33752, 2015;

5. Wei Huang, Yan-ge Liu,* Zhi Wang, Bo Liu, Jing Wang, Mingming Luo, Junqi Guo, and Lie Lin, Multi-component-intermodal-interference mechanism and characteristics of a long period grating assistant fluid-filled photonic crystal fiber interferometer, Optics Express, Vol. 22, No. 5, 5883~5894, 2014;

6. Huang Wei, You Yong*, Song Bin-bin, and Chen Sheng-yong,A photonic crystal fiber for supporting 30 orbital angular momentum modes with low dispersion;Optoelectronics Letters, Vol. 16 No. 1, 34-39, 2020;

7. Yong You, Wei Huang*, Shengyong Chen, Binbin Song, Flat and low dispersion microstructured optical fiber for supporting 22 orbital angular momentum modes, Guangxue Xuebao/Acta Optica Sinica, Vol.38 No. 4, 0406006, 2018;

8. Li Yang, Tang Ting-long, Huang Wei*,A robust auto-focus measure based on inner energy,Optoelectronics Letters, Vol.13 No.4, 0309-0313, 2017;

9. Zhe Zhang , Wanli Xue* , Wei Huang* , Shengyong Chen, Effective Video Frame Acquisition for Image Stitching, IEEE Access, Vol. 8, 217086-217097, 2020;

10. Miao Li, Wenguang Zheng*, Yingyuan Xiao, Ke Zhu, Wei Huang*,Exploring Temporal and Spatial Features for Next POI Recommendation in LBSNs, IEEE Access, Vol. 9, 35997-36007, 2021;

11. Wei Huang, Yan-ge Liu,* Zhi Wang, Bo Liu, Junqi Guo, Mingming Luo, Lie Lin, Intermodal interferometer with low insertion loss and high extinction ratio composed of a slight offset point and a matching long period grating in two-mode photonic crystal fiber, Applied Optics, Vol. 54, No. 2, 285~290, 2015;

12. Wei Huang, Yan-ge Liu*, Zhi Wang, Jie Yu, Ya Han, Junqi Guo, Bo Liu, and Lie Lin, Fiber interferometric probe based on a long period grating inscribed in an all-solid photonic bandgap fiber, Wireless and Optical Communication Conference (WOCC),2016;

13.Wei Huang, Yan-ge Liu*, Zhi Wang, Bo Liu, Lie Lin, Fluid-filled photonic crystal fiber modal interferometer utilizing long period grating, Asia Communications & Photonics Conference, 2013.

所获奖励:

入选2017年天津市“131”创新型人才培养工程,天津市高校“青年后备人才支持计划”人选。

专利与软著:

1、一种可支持22个OAM模式传输的低平坦色散微结构光纤,CN107831566B,发明专利,已授权;

2、一种具有双生谐振干涉峰的光纤传感器及其制造方法,CN107990920B,发明专利,已授权;

3、可支持18个OAM模式传输的纯二氧化硅空气孔光子晶体光纤,CN108957623B,发明专利,已授权;

4、基于双环谐振的OAM模式色散补偿微结构光纤,CN111913250A,发明专利,已公开;

5、光纤特性预测软件,2021SR1038627,软著。

联系方式e-mail:hw_tjut@vip.163.com; weihuang@tjut.edu.cn。