研究成果已多次在国内外高水平刊物上发表(所发表SCI/EI检索论文共计70余篇),并且获得了多项国家发明专利的授权。
2020年以来,以第一作者或通讯作者发表的SCI检索论文如下:
-
Li Guangde , Liu Yan*, Pang Lezhi, et al, "A system for automatic recognition of robotic hand gesture based on Raspberry pi and convolutional neural network by using specklegram," in IEEE Sensors Journal, early access,2025. 中科院二区
-
Li Guangde, Liu Yan*, Pang Lezhi, et al, “A Novel Structure with Ultra Short Multimode Fiber for Fiber Specklegram Sensor and Its Application in Multi-Bending Sensing. Proof and Concept,” Journal of Lightwave Technology, 1-9, 2024. 中科院二区,top期刊
-
Yuan Hui, Liu Yan*, Li Guangde, et al, “Torsion and bending sensing based on the specklegrams from a coupled few-mode multi-core fiber,” Optics Communications, 569:130732, 2024.
-
Liu Yan*, Zou Xiaoli, Li Guangde, et al, Reflective optical tactile sensor based on fiber specklegram analysis with the capability of contact position identification[J], Journal of Lightwave Technology, 2023. 中科院二区,top期刊
-
Cai Yuezhi, Liu Yan*, Li Guangde, et al, Reflective tactile sensor assisted by multimode fiber-based optical coupler and fiber specklegram [J],Optics and Laser Technology, 2023, 160, 109062. 中科院二区
-
Li Guangde, Liu Yan*, Qin Qi, et al,Fiber specklegram torsion sensor based on residual network[J], Optical Fiber Technology, 2023, 103446.
-
Li Guangde, Liu Yan*, Qin Qi, et al,Feature extraction enabled deep learning from specklegram for optical fiber curvature sensing[J], IEEE Sensors Journal, 2022. 中科院二区
-
Li Guangde, Liu Yan*, Qin Qi, et al, Deep learning based optical curvature sensor through specklegram detection of multimode fiber[J], Optics and Laser Technology, 2022,149, 107873. 中科院二区
-
Qin Qi, Yan Fengping*, Liu Yan* , et al. Thulium-doped fiber laser with bidirectional output in a ring laser cavity[J], Optics and Laser Technology, 2022. 中科院二区
-
Qin Qi, Yan Fengping*, Liu Yan* , et al. Modified two-mode fiber-based filter and its application in a switchable thulium-doped fiber laser[J], Optics and Laser Technology, 2022. 中科院二区
-
Qin Qi, Yan Fengping*, Liu Yan* , et al. Multi-wavelength thulium-doped fiber laser via a polarization-maintaining Sagnac loop mirror with a theta-shaped configuration[J]. Journal of Lightwave Technology, 2021, PP(99):1-1. 中科院二区,top期刊
-
Qin Qi, Yan Fengping* , Liu Yan*, et al. Stable, precisely controlled, and switchable thulium-doped fiber laser based on cascaded mode interference filters[J]. Optics Express, 2021, 29(7):9786-9796. 中科院二区,top 期刊
-
Liu Yan*, Zou xiaoli, et al. An optical contact force sensor for tactile sensing based on specklegram detection from concatenated multimode fibers[J], Optics and Laser Technology, 2021, 143(11):107362. 中科院二区
-
Liu Yan*, Li Guangde, Qin Qi, et al. Bending recognition based on the analysis of fiber specklegrams using deep learning[J]. Optics and Laser Technology,2020, 131,106424. 中科院二区
-
Liu Yan*, Hu Yaohua, Li Yang , et al. Image Compression-Encryption Scheme via Fiber Specklegram-Based Compressive Sensing and Double Random Phase Encoding[J]. IEEE Photonics Journal, 2020, PP(99):1-1.
-
Mu Ge, Liu Yan*, Qin Qi , et al. Refractive Index Sensing Based on the Analysis of D-Shaped Multimode Fiber Specklegrams[J]. Photonics Technology Letters, 2020, PP(99):1-1.
-
Qin Qi, Yan Fengping*, Liu Yan*, et al. Isolator-free unidirectional dual-wavelength thulium-doped fiber laser assisted by a two-mode fiber filter[J]. Optics and Laser Technology, 2020, 134(11):106638. 中科院二区
-
Qin Qi, Yan Fengping* , Liu Yan*, et al. Twelve-Wavelength-Switchable Thulium-Doped Fiber Laser With a Multimode Fiber Bragg Grating[J]. IEEE Photonics Journal, 2021, 13(3):7100710.
-
Qin Qi, Yan Fengping*, Liu Yan*, et al. Investigation of a multiwavelength thulium-doped fiber laser incorporating a two-mode fiber filter[J]. Infrared Physics & Technology, 2020, 108(10):103360. 中科院二区
-
Qin Qi, Liu Yan*, Tan Zhongwei , et al. Measurement matrix construction by specklegrams from step index multimode fiber and its application in compressive sensing [J]. Optik, 2020, 220, 164783.
-
胡耀华, 刘艳*, 穆鸽等. 基于多模光纤散斑的压缩感知在光学图像加密中的应用,物理学报, 2020, 69 (3) 034203.