王达磊;庄骁磊;孙洪滨;郭道俊;董一庆;范凌泰;董涛;潘玥,一种图像采集装置,CN202322355276.9,有权,2024.06.07
崔屿杰;郭跃;肖子恒;李路瑶;季马泽宇;王达磊;潘玥,一种箱梁内部病害的自主扫描检测装置,CN202321334894.9,有权,2024.05.14
崔屿杰;郭跃;肖子恒;李路瑶;季马泽宇;王达磊;潘玥,一种建筑底板裂缝的自主扫描检测装置,CN202321335738.4,有权,2023.11.10
王达磊;吉煜鹏;潘玥;刘玖财,一种高精度视觉挠度监测系统,CN202121442093.5,有权,2022.07.08
王达磊;马云龙;董一庆;潘玥,一种阵列式连接件缺失检测系统,CN202121462812.X,有权,2022.02.15
王达磊;庄骁磊;潘玥;李梓巍,一种梁底扫描系统,CN202120768925.6,有权,2022.01.18
郭跃;庄骁磊;季马泽宇;胡浚桐;董一庆;潘玥;王达磊,一种自旋转式结构表观三维扫描装置,CN202120740340.3,有权,2022.01.18
潘玥;庄骁磊;郭跃;王达磊;董一庆;程天政,一种可拓展式结构表观平面扫描单元及装置,CN202120724060.3,有权,2022.01.04
潘玥;程天政;董一庆;王达磊,一种多目隧道式线性构件扫描装置,CN202121439317.7,有权,2021.12.28
潘玥;马云龙;董一庆;王达磊,一种带有锈蚀监测功能的阵列式金属连接件系统,CN202121450392.3,有权,2021.12.07
徐向东;杜镔;潘玥;王达磊;马如进;唐志;周潇;张世娟;杨健;陈应高;杨鸿波,一种钢桁梁桥面板梁底检测装置,CN202021531878.5,有权,2021.04.30
徐向东;杜镔;潘玥;王达磊;马如进;唐志;周潇;张世娟;杨健;陈应高;杨鸿波,一种永久供电式钢桁梁桥面板梁底检测装置,CN202021534178.1,有权,2021.04.30
徐向东;杜镔;王达磊;马如进;潘玥;马云龙;唐志;周潇;张世娟;杨健;陈应高;杨鸿波;李银斌,一种钢桁架桥损伤检测装置,CN202021484836.0,有权,2021.01.22
徐向东;杜镔;王达磊;马如进;潘玥;马云龙;唐志;周潇;张世娟;杨健;陈应高;杨鸿波;李银斌,一种螺栓缺栓松动监测装置,CN202020942154.3,有权,2020.10.30
潘玥;马腾;董一庆;顾振雄;王达磊;陈艾荣,一种正交异性钢箱梁过焊孔裂纹长期监测装置,CN201920731754.2,有权,2020.06.19
潘玥;马逸鹄;陈艾荣;王达磊;马如进;董一庆,一种螺栓防松预警监测装置,CN201821340664.2,有权,2019.02.15
【期刊论文】
- Dong, Y., Pan, Y.*, Wang, D., & Chen, A. (2024). Traffic Load Simulation for Long-Span Bridges Using a Transformer Model Incorporating In-Lane Transverse Vehicle Movements. IEEE Transactions on Intelligent Transportation Systems, 25(11), 15600–15613. https://doi.org/10.1109/TITS.2024.3452106
- Pan, Y., Dong, Y., Wang, D., Di, J., & Chen, A. (2024). Vehicle Detection and Classification by Voiceprint Recognition Based on Single Acoustic Sensor Under Bridge Expansion Joint. IEEE Transactions on Instrumentation and Measurement, 73. https://doi.org/10.1109/TIM.2024.3428610
- Pan, Y., Dong, Y., Wang, D. et al. Comparative study on fatigue evaluation of suspenders by introducing actual vehicle trajectory data. Sci Rep 14, 5165 (2024). https://doi.org/10.1038/s41598-024-55873-1
- Dong, Y., Pan, Y.*, Wang, D., & Chen, A. (2024). Transformer-Enhanced Traffic Load Simulation for Wear Evaluation of Bridge Expansion Joint. Structural Control and Health Monitoring, 2024. https://doi.org/10.1155/2024/6631877
- Dong, Y., Wang, D., Pan, Y., Di, J., & Chen, A. (2024). Fault Detection of In-Service Bridge Expansion Joint Based on Voiceprint Recognition. Structural Control and Health Monitoring, 2024. https://doi.org/10.1155/2024/1270912
- Yiqing Dong, Dalei Wang, Yue Pan* and Yunlong Ma. "Full-Bridge Vehicle Load Monitoring for Super-long Span Bridge Based on Vision and WIM integration" Automation in Construction. 2023;DOI: 10.1016/j.autcon.2023.104985.
- Li Fang, Jinzhou Liu, Yue Pan*, Zhen Ye, Xiaohua Tong. "Semantic supported urban change detection using ALS point clouds" International Journal of Applied Earth Observation and Geoinformation, 2023; DOI: 10.1016/j.jag.2023.103271.
- Cheng Xiang, Dalei Wang, Yue Pan*, Airong Chen, Xiaoyi Zhou, Yiquan Zhang. "Accelerated topology optimization design of 3D structures based on deep learning" Structural and Multidisciplinary Optimization, 2022, DOI: 10.1007/s00158-022-03194-0.
- Yiqing Dong, Yue Pan*, Tianzheng Cheng, Dalei Wang. "Corrosion detection and evaluation for steel wires based on a multi-vision scanning system" Construction and Building Materials,2022;DOI: 10.1016/j.conbuildmat.2021.125877.
- Y. Pan, D. Wang*, Y. Dong and B. Peng, "A Novel Vision-Based Framework for Identifying Dynamic Vehicle Loads on Long-Span Bridges: A Case Study of Jiangyin Bridge, China," IEEE Transactions on Intelligent Transportation Systems, 2021, DOI: 10.1109/TITS.2021.3094504.
- Y. Pan, Y. Ma, Y. Dong, Z. Gu and D. Wang*, "A Vision-Based Monitoring Method for The Looseness of High-Strength Bolt," IEEE Transactions on Instrumentation and Measurement, Vol. 70, pp. 1-14, 2021, Art no. 5013914, DOI: 10.1109/TIM.2021.3101316.
- D. Wang, C. Xiang, Y. Pan*, A. Chen, X. Zhou and Y. Zhang, "A Deep Convolutional Neural Network for Topology Optimization with Perceptible Generalization Ability" Engineering Optimization. 2021; DOI: 10.1080/0305215x.2021.1902998.
- D. Wang, Y. Dong, Y. Pan* and R. Ma, "Machine Vision-Based Monitoring Methodology for the Fatigue Cracks in U-Rib-to-Deck Weld Seams," in IEEE Access, vol. 8, pp. 94204-94219, 2020, DOI: 10.1109/ACCESS.2020.2995276.
- D. Wang, Y. Zhang, Y. Pan*, B. Peng, H. Liu and R. Ma, "An Automated Inspection Method for the Steel Box Girder Bottom of Long-Span Bridges Based on Deep Learning," in IEEE Access, vol. 8, pp. 94010-94023, 2020, DOI: 10.1109/ACCESS.2020.2994275.
- Pan, Y., Y. Dong, D. Wang*, A. Chen And Z. Ye., "Three-Dimensional Reconstruction of Structural Surface Model of Heritage Bridges using UAV-Based Photogrammetric Point Clouds" Remote Sensing, 2019; Vol. 11, No. 10: 1204. DOI: 10.3390/RS11101204.
- Pan, Y., Wang, D., Shen, X., Xu, Y. and Pan, Z, "A Novel Computer Vision-Based Monitoring Methodology for Vehicle-Induced Aerodynamic Load On Noise Barrier" Structural Control & Health Monitoring. 2018; 25: e2271. DOI: 10.1002/STC.2271.
- Chen, A., Fang, X., Pan, Z.*, Wang, D., Pan, Y, Peng, B.. Engineering practices on surface damage inspection and performance evaluation of concrete bridges in China. Structural Concrete. 2021; 1– 16. DOI:10.1002/SUCO.202100158
- Ma, Rujin, Zhen Zhang, Yiqing Dong*, and Yue Pan. "Deep Learning Based Vehicle Detection and Classification Methodology Using Strain Sensors under Bridge Deck" Sensors,2020, no. 18: 5051. DOI: 10.3390/s20185051
- 陈艾荣,李梓巍,潘玥*,王达磊,马逸鹄. 基于本福特定律的桥梁健康监测数据审计方法[J].同济大学学报(自然科学版).2023. doi: 10.11908/j.issn.0253-374x.21514
- 董一庆,王达磊,潘玥*,李晓娅.结构表观病害人工标记数据标准化批处理方法[J]. 华南理工大学学报(自然科学版). 2021. doi:10.12141/j.issn.1000-565X.210016.
- 马如进,董一庆,潘子超*,潘玥.基于消费级无人机的古桥三维重构分析[J].华南理工大学学报(自然科学版),2019,47(06):94-100+126
- 王达磊,彭博,潘玥,陈艾荣*. 基于深度神经网络的锈蚀图像分割与定量分析[J]. 华南理工大学学报(自然科学版).2018,46(12):121-127.
【会议论文】
- Shan, X., Zhang, J., Pan, Y.*, Ma, Y., & Wang, D. (2024). Super-resolution enhanced vehicle recognition method for long-span bridge. Bridge Maintenance, Safety, Management, Digitalization and Sustainability - Proceedings of the 12th International Conference on Bridge Maintenance, Safety and Management, IABMAS 2024, 3513–3521. https://doi.org/10.1201/9781003483755-415
- Cui, Y., Pan, Y.*, Wang, D., Ji, M., & Cao, S. (2024). A smart robotic system for autonomous inspection of large-scale concrete girder. Bridge Maintenance, Safety, Management, Digitalization and Sustainability - Proceedings of the 12th International Conference on Bridge Maintenance, Safety and Management, IABMAS 2024, 717–725. https://doi.org/10.1201/9781003483755-83
- Cao, S. G., Li, X. Y., Pan, Y., Fu, J. L., & Tian, H*. (2023). Research on imaging technology of concrete bridge bottom apparent disease detection based on machine vision. Life-Cycle of Structures and Infrastructure Systems - Proceedings of the 8th International Symposium on Life-Cycle Civil Engineering, IALCCE 2023, 3864–3871. https://doi.org/10.1201/9781003323020-474
- Pan, Y., Zhuang, X. L., Wang, D. L., & Tian, H. (2023). A novel ropeway-based system for bridge apparent scanning. Bridge Safety, Maintenance, Management, Life-Cycle, Resilience and Sustainability - Proceedings of the 11th International Conference on Bridge Maintenance, Safety and Management, IABMAS 2022, 1580–1585. https://doi.org/10.1201/9781003322641-194
- Liu, J. C., Pan, Y.*, Wang, D. L., Ji, Y. P., & Zhou, Z. T. (2023). A displacement measurement method based on special image signs. Bridge Safety, Maintenance, Management, Life-Cycle, Resilience and Sustainability - Proceedings of the 11th International Conference on Bridge Maintenance, Safety and Management, IABMAS 2022, 1421–1426. https://doi.org/10.1201/9781003322641-172
- Cheng, T. Z., Pan, Y.*, Dong, Y. Q., Wang, D. L. (2023). Reconstruction of 3D model and performance analysis of high strength steel wire with corrosion pit. Bridge Safety, Maintenance, Management, Life-Cycle, Resilience and Sustainability - Proceedings of the 11th International Conference on Bridge Maintenance, Safety and Management, IABMAS 2022, 207–212. https://doi.org/10.1201/9781003322641-21
- Li, Z. W., Wang, D. L., & Pan, Y. (2023). Quality comfirmation of two typical acceleration data based on Benford’s law. Bridge Safety, Maintenance, Management, Life-Cycle, Resilience and Sustainability - Proceedings of the 11th International Conference on Bridge Maintenance, Safety and Management, IABMAS 2022, 1759–1764. https://doi.org/10.1201/9781003322641-218
- Li, H. Q., Wang, D. L., & Pan, Y. (2023). Wind-induced vibration of lampposts on a long bridge over open water and its vibration reduction analysis. Bridge Safety, Maintenance, Management, Life-Cycle, Resilience and Sustainability - Proceedings of the 11th International Conference on Bridge Maintenance, Safety and Management, IABMAS 2022, 629–634. https://doi.org/10.1201/9781003322641-75
- Dong, Y., Wang, D., Ma, Y., & Pan, Y.* (2022). Unit influence surface identification of long-span bridge based on spatial-temporal vehicle load monitoring. IABSE Congress Nanjing 2022 - Bridges and Structures: Connection, Integration and Harmonisation, Report, 1295–1303. https://doi.org/10.2749/nanjing.2022.1295
- Wang, D., Zhuang, X., Dong, Y., Pan, Y.*, & Xu, X. (2022). A Novel Method for Generating Apparent Panoramic Image of Real Texture of Concrete Bridge Based on Multi-View Registration. IABSE Congress Nanjing 2022 - Bridges and Structures: Connection, Integration and Harmonisation, Report, 1514–1520.
- Ji, Y., Wang, D., Liu, J., & Pan, Y.* (2022). A novel portable vision-based bridge weigh in motion method. IABSE Congress Nanjing 2022 - Bridges and Structures: Connection, Integration and Harmonisation, Report, 1288–1294.
- Zhuang, X. L., Wang, D. L., Peng, B., Pan, Y.*, & Sun, H. B. (2020). Inspection and evaluation of apparent damage in concrete pier based on computer vision. Life-Cycle Civil Engineering: Innovation, Theory and Practice - Proceedings of the 7th International Symposium on Life-Cycle Civil Engineering, IALCCE 2020, 1566–1571. https://doi.org/10.1201/9780429343292-211.
- Gu, Z. X., Dong, Y. Q., Wang, D. L., Pan, Y.*, & Xu, X. D. (2020). A novel system for the looseness monitoring of high-strength bolts based on machine vision. Life-Cycle Civil Engineering: Innovation, Theory and Practice - Proceedings of the 7th International Symposium on Life-Cycle Civil Engineering, IALCCE 2020, 1561–1565. https://doi.org/10.1201/9780429343292-210
- Ma, Y. L., Dong, Y. Q., Wang, D. L., Pan, Y.*, & Zhang, S. Q. (2020). Full-bridge vehicle identification and tracking method for long-span bridges based on deep learning. Life-Cycle Civil Engineering: Innovation, Theory and Practice - Proceedings of the 7th International Symposium on Life-Cycle Civil Engineering, IALCCE 2020, 1605–1610. https://doi.org/10.1201/9780429343292-217
- Ji, Y. P., Dong, Y. Q., Wang, D. L., Ma, R. J., & Pan, Y.* (2020). A vehicle axle group classification approach based on convolutional neural networks. Life-Cycle Civil Engineering: Innovation, Theory and Practice - Proceedings of the 7th International Symposium on Life-Cycle Civil Engineering, IALCCE 2020, 1630–1635. https://doi.org/10.1201/9780429343292-221
- Dong, Y. Q., Pan, Y.*, Ma, T., Ma, R. J., & Wang, D. L. (2020). A novel system for the monitoring of fatigue cracks in orthotropic steel-box girder. Life-Cycle Civil Engineering: Innovation, Theory and Practice - Proceedings of the 7th International Symposium on Life-Cycle Civil Engineering, IALCCE 2020, 1349–1357. https://doi.org/10.1201/9780429343292-179
- Wang, D., Peng, B., & Pan, Y.* (2018). Corrosion segmentation and quantitative analysis based on deep neural networks. Maintenance, Safety, Risk, Management and Life-Cycle Performance of Bridges - Proceedings of the 9th International Conference on Bridge Maintenance, Safety and Management, IABMAS 2018, 2881–2888.
- Wang, D., Pan, Y.*, & Peng, B. (2018). Steel box-girder bridge diseases identification based on computer vision system. Maintenance, Safety, Risk, Management and Life-Cycle Performance of Bridges - Proceedings of the 9th International Conference on Bridge Maintenance, Safety and Management, IABMAS 2018, 504–511.
- N. F. Catbas, S. Hiasa, C. Dong*, Y. Pan, O. Celik, E. Karaaslan,(2017) Comprehensive structural health monitoring at local and global level with vision- based technologies. 26th ASTN symposium, Jacksonville, Florida, Mar.13 -16, 2017, 26, 10–21.
- Pan, Y., Wang, D. L., Chen, A. R., & Ma, R. J. (2016). A creation method of lane load characteristic on highway bridges based on deck monitoring video integrated with WIM data. Maintenance, Monitoring, Safety, Risk and Resilience of Bridges and Bridge Networks - Proceedings of the 8th International Conference on Bridge Maintenance, Safety and Management, IABMAS 2016, 253–260.
- Wang, D. L., Pan, Y.*, Shen, X., Ma, R. J., & Chen, A. R. (2016). An innovation monitoring method of vehicle induced aerodynamic load on sound barrier integrated with photogrammetry and image analysis. Maintenance, Monitoring, Safety, Risk and Resilience of Bridges and Bridge Networks - Proceedings of the 8th International Conference on Bridge Maintenance, Safety and Management, IABMAS 2016, 623–630.
- Chen, A., Pan, Y., Pan, Z.*, & Ma, R. (2015). Vehicle load identification of long-span bridges based on dynamic image recognition: Theoretical research and application in Sutong Bridge. Life-Cycle of Structural Systems: Design, Assessment, Maintenance and Management - Proceedings of the 4th International Symposium on Life-Cycle Civil Engineering, IALCCE 2014, 1017–1020. https://doi.org/10.1201/b17618-148
【发明专利】
- 潘玥;马腾;董一庆;顾振雄;王达磊;陈艾荣,一种正交异性钢箱梁过焊孔裂纹长期监测装置,CN201910424262.3,有权,2024.08.06
- 潘玥;庄骁磊;郭跃;王达磊;董一庆;程天政,一种可拓展式结构表观平面扫描单元及装置,CN202110383590.0,有权,2024.05.31
- 李晓娅;张征文;潘玥;张勇;寇静;胡皓;许越楷;王达磊;董一庆;庄骁磊,一种基于局部和全局特征的桥梁表观全景图生成方法,CN202110381677.4,有权,2024.02.23
- 王达磊;郭跃;潘玥;董一庆,一种用于桥塔区的防风、防火和防爆一体化结构,CN202210086873.3,有权,2023.09.26
- 潘玥;马逸鹄;陈艾荣;王达磊;马如进;董一庆,一种螺栓防松预警监测装置,CN201810949242.3,有权,2023.08.08
- 潘玥;王达磊;董一庆;马云龙;李梓巍;吉煜鹏,混凝土预制梁成品质量检测和数字实体模型构建系统及方法,CN202110187231.8,有权,2023.08.04
- 潘玥;董一庆;王达磊;徐聿升,一种基于长条形棋盘格标定板的近景图像拼接方法,CN201910854817.8,有权,2023.02.28
- 马云龙;潘玥;王达磊;董一庆,点阵平面共线特征快速识别方法、存储设备及装置,CN202110572619.X,有权,2023.02.10
- 潘玥;董一庆;王达磊,一种车辆荷载预测方法和系统,CN202110378341.2,有权,2022.11.18
- 王达磊;马云龙;董一庆;潘玥,一种桁架桥节点板视觉特征标识编解码方法,CN202110572632.5,有权,2022.09.16
- 王达磊;刘玖财;潘玥;吉煜鹏,高精度近景摄影测量标志的编解码方法和测量方法,CN202110719511.9,有权,2022.06.14
- 潘玥;陈艾荣;王达磊;董一庆;马云龙;顾振雄;吉煜鹏;庄骁磊,一种桥梁车辆时空荷载监控方法,CN202011315926.1,有权,2021.11.09
- 黄荣;徐聿升;洪丹枫;潘玥;顾振雄,基于局部和全局深度特征嵌入的机载激光点云分类方法,CN201910666393.2,有权,2021.10.15
- 徐聿升;叶真;潘玥;顾振雄,一种基于全局图聚类的平面建筑构件点云轮廓提取方法,CN201910492239.8,有权,2021.07.16
- 黄荣;叶真;徐聿升;潘玥;顾振雄,一种基于点云语义标注和优化的点云分类方法,CN201910492227.5,有权,2021.05.11
- 叶真;徐聿升;潘玥;顾振雄,基于多尺度超像素和相位相关的窄基线视差的重构方法,CN201910491539.4,有权,2021.05.11
- 潘玥,一种可编码近景摄影测量标志的编码解码与测量方法,CN201810803118.6,有权,2021.03.12
【实用新型专利】
- 王达磊;庄骁磊;孙洪滨;郭道俊;董一庆;范凌泰;董涛;潘玥,一种图像采集装置,CN202322355276.9,有权,2024.06.07
- 崔屿杰;郭跃;肖子恒;李路瑶;季马泽宇;王达磊;潘玥,一种箱梁内部病害的自主扫描检测装置,CN202321334894.9,有权,2024.05.14
- 崔屿杰;郭跃;肖子恒;李路瑶;季马泽宇;王达磊;潘玥,一种建筑底板裂缝的自主扫描检测装置,CN202321335738.4,有权,2023.11.10
- 王达磊;吉煜鹏;潘玥;刘玖财,一种高精度视觉挠度监测系统,CN202121442093.5,有权,2022.07.08
- 王达磊;马云龙;董一庆;潘玥,一种阵列式连接件缺失检测系统,CN202121462812.X,有权,2022.02.15
- 王达磊;庄骁磊;潘玥;李梓巍,一种梁底扫描系统,CN202120768925.6,有权,2022.01.18
- 郭跃;庄骁磊;季马泽宇;胡浚桐;董一庆;潘玥;王达磊,一种自旋转式结构表观三维扫描装置,CN202120740340.3,有权,2022.01.18
- 潘玥;庄骁磊;郭跃;王达磊;董一庆;程天政,一种可拓展式结构表观平面扫描单元及装置,CN202120724060.3,有权,2022.01.04
- 潘玥;程天政;董一庆;王达磊,一种多目隧道式线性构件扫描装置,CN202121439317.7,有权,2021.12.28
- 潘玥;马云龙;董一庆;王达磊,一种带有锈蚀监测功能的阵列式金属连接件系统,CN202121450392.3,有权,2021.12.07
- 徐向东;杜镔;潘玥;王达磊;马如进;唐志;周潇;张世娟;杨健;陈应高;杨鸿波,一种钢桁梁桥面板梁底检测装置,CN202021531878.5,有权,2021.04.30
- 徐向东;杜镔;潘玥;王达磊;马如进;唐志;周潇;张世娟;杨健;陈应高;杨鸿波,一种永久供电式钢桁梁桥面板梁底检测装置,CN202021534178.1,有权,2021.04.30
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