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張智安 助理教授

張智安 教授

最高學歷: 國立中央大學土木工程學系 博士

研究專長:數位攝影測量、遙感探測、光達測量、數位城市

教授課目: 測量學、測量實習、服務學習、攝影測量與遙感探測、
遙測學、工程圖學、數值攝影測量、數碼城市空間資訊

辨公室:工程二館214室

電話:03-5712121 ext:54929

電子信箱: tateo@mail.nctu.edu.tw

經歷:

2012∼2016 國立交通大學 土木工程學系 副教授
2009∼2012 國立交通大學 土木工程學系 助理教授
2008∼2009 國立中央大學 太空及遙測研究中心 博士後研究員

個人著作

期刊論文
  1. Teo, T.A. and Cho, K.H. 2016. BIM-oriented indoor network model for indoor and outdoor combined route planning. Advanced Engineering Informatics, 30(3):268-282.
  2. Teo T.A. and Huang C.H., 2016. Object-based Land Cover Classification Using Airborne Lidar and Different Spectral Images, Terrestrial, Atmospheric and Oceanic Sciences, 27(4):491-504.
  3. Wu, J.Y., Teo, T.A. and Shih, P.T.Y., 2016. Geomorphological Change Detection using an Integrated Method: A Case Study of Taan River Watershed, Taiwan, Terrestrial, Atmospheric and Oceanic Sciences, 27(4):521-536.
  4. Teo, T.A. and Wu, H.M. 2015. Radiometric Block Adjustment for Multi-Strip AirborneWaveform Lidar Data. Remote Sensing, 7(12):16831-16848.
  5. Teo, T.A. and Chiu, C.M. 2015. Pole-like Road Object Detection From Mobile Lidar System Using a Coarse-to-Fine Approach, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 8(10): 4805-4818.
  6. Teo, T.A. and Yu, H.L. 2015. Empirical Radiometric Normalization of Road Points from Terrestrial Mobile Lidar System. Remote Sensing, 7(5): 6336-6357.
  7. Teo, T.A., and Huang, S.H. 2014. Surface-Based Registration of Airborne and Terrestrial Mobile LiDAR Point Clouds, Remote Sensing, 6(12) PP. 12686-12707.
  8. Teo, T.A., 2013, Line-based Rational Function Model for High Resolution Satellite Imagery, International Journal of Remote Sensing, 34(4): 1355-1372.
  9. Teo, T.A., Shih, T.Y., 2013, Lidar-based Change Detection and Change Type Determination in Urban Areas, International Journal of Remote Sensing, 34(3): 968-981.
  10. Teo, T.A. and Huang, S.H. 2013. Automatic Co-Registration of Optical Satellite Images and Airborne Lidar Data Using Relative and Absolute Orientations, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 6(5): 2229-2237.
  11. Shih, P.T.Y., Wu, J.Y., Teo, T.A. and Tsai, J.C., 2013, Digital elevation quality derived from medium-format digital cameras, The Photogrammetric Record. 28(144): 416-435.
  12. Chen, L.C., Chang, W.C., and Teo, T.A., 2012. Geometric Integration of Heterogeneous Models for Multisatellite Image Positioning, IEEE Transactions on Geoscience and Remote Sensing, 50(7): 2802-2809.
  13. Chen, L.C., Huang, C.Y., and Teo, T.A., 2012, Multi-type change detection of building models by integrating spatial and spectral information, International Journal of Remote Sensing, 33(6): 1655-1681.
  14. Teo, T.A., Lau, C.C. 2012, Pyramid-based image empirical mode decomposition for the fusion of multispectral and panchromatic images, EURASIP Journal on Advances in Signal Processing, 2012:4.
  15. Teo, T.A., 2011, Bias Compensation in a Rigorous Sensor Model and Rational Function Model for High-Resolution Satellite Images, Photogrammetric Engineering and Remote Sensing, 77(12):1211-1220.
  16. Teo, T.A., Chen, L.C., Liu, C.L., Tung, Y.C. and Wu, W.Y., 2010. DEM-Aided Block Adjustment for Satellite Images With Weak Convergence Geometry, IEEE Transactions on Geoscience and Remote Sensing. 48(4):1907-1918.
  17. Chen, L.C., Teo, T.A., Kuo, C.Y., and Rau, J.Y., 2008, Shaping Polyhedral Buildings by the Fusion of Vector Maps and LIDAR Point Clouds, Photogrammetric Engineering and Remote Sensing. 74(9): 1147-1157.
  18. Chen, L. C., Teo, T. A., Wen, R. Y., and Rau, J.Y., 2007, Occlusion-compensated True Orthorectification for High Resolution Satellite Images, Photogrammetric Record. 22, (117): 39-52.
  19. Chen, L. C., Teo, T. A., and Liu, J. L., 2006, The Geometrical Comparisons of RSM and RFM for FORMOSAT-2 Satellite Images, Photogrammetric Engineering and Remote Sensing. 72(5): 573-579.
  20. Chen, L. C., Teo, T. A., and Rau, J. Y., 2005. Adaptive patch projection for the generation of orthophotos from satellite images, Photogrametric Engineering and Remote Sensing. 71(11): 1321-1327.
會議論文
  1. Teo, T.A., and Kuo, I.L.2016. Object-Based Semi-Global Matching For Multi-View High Resolution Satellite Images, Proceedings of the 37th Asian Conference on Remote Sensing, Oct. 17-21, Colombo, Sri Lanka, USB Flash drive.
  2. Teo, T.A. and Zhan, K.Z., 2016. Integration of Image-Derived and Pos-Derived Features for Image Blur Detection, International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, XLI-B1, 1051-1055, doi:10.5194/isprs-archives-XLI-B1-1051-2016.
  3. Teo, T.A., Shih, P. T.Y., Yu, S.C., and Tsai, F., 2016. The Use of UAS for Rapid 3d Mapping in Geomatics Education, International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, XLI-B6, 95-100, doi:10.5194/isprs-archives-XLI-B6-95-2016.
  4. Chen, T.Y., Chen, B., Teo, T.A., and Shih, P.T.Y., 2016. Change Detection with Satellite Image for Disaster Mitigation: A Crowdsourcing Approach. International Symposium on Remote Sensing 2016, Apr. 20-22, Incheon, South Korea, CD-ROM.
  5. Kuo, I.L. and Teo, T.A., 2015. Dense Matching For Worldview-3 Multispectral Stereo Images. Proceedings of the 36th Asian onference on Remote Sensing, Oct. 19-23, Quezon City, Metro Manila, Philippines.
  6. Teo, T.A. 2015. Object-Based Point Clouds Classification Using Airborne Waveform Lidar. Proceedings of the 36th Asian Conference on Remote Sensing, Oct. 19-23, Quezon City, Metro Manila, Philippines.
  7. Wu, H.M. and Teo, T.A. 2015. Land-Cover Identification From Airborne Waveform Lidar Using A Waveform Stacking Method. Proceedings of the 36th Asian Conference on Remote Sensing, Oct. 19-23, Quezon City, Metro Manila, Philippines.
  8. Teo, T.A. 2015. Video-Based Point Cloud Generation Using Multiple Action Cameras. International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences.
  9. Huang, C.H., and Teo, T.A. 2014. Integration of Airborne Hyperspectral Imagery and Airborne Lidar Point Clouds for Object-Based Classification. Proceedings of the 35th Asian Conference on Remote Sensing, Oct. 27-31, Nay Pyi Taw, Myanmar.
  10. Wu, H.M., and Teo, T.A. 2014. Relevance of Vegetation Indices from Multispectral Image and Airborne Full-Waveform LiDAR in Urban Area. Proceedings of the 35th Asian Conference on Remote Sensing,Oct. 27-31, Nay Pyi Taw, Myanmar.
  11. Yu, S.C., and Teo, T.A. 2014. The Generalization of BIM/IFC Model for Multi-Scale 3D GIS/CityGML Models. Proceedings of the 35th Asian Conference on Remote Sensing, Oct. 27-31, Nay Pyi Taw, Myanmar.
  12. Zhan, K.Z., and Teo, T.A. 2014. Least Squares Multiple Images Matching for Large Coverage Aerial Image and Small Coverage UAV Image. Proceedings of the 35th Asian Conference on Remote Sensing, Oct. 27-31, Nay Pyi Taw, Myanmar.
  13. Teo, T.A., Wu, H.M., Shih, T.Y., and Tsai, F., 2014. The Analysis of Smartphone APPs in Geomatics Education, Mid-Term Symposium ISPRS Commission VI - Data Information, and Knowledge Sharing for Geo-Education, May 19-21, Wuhan, China, CD-ROM.
  14. Yu, H.L., Teo, T.A., Lin, Y.T., and Lee, SF.H., 2013. Intensity Correction of Terrestrial Mobile Lidar Data using Empirical Model, The International Symposium on Mobile Mapping Technology 2013, May.1-3, Tainan, Taiwan, CD-ROM.
  15. Chiu, C.M., Teo, T.A., and Chen, C.T., 2013. Three-dimensional Modelling of Multilayer Road Networks Using Road Centerlines and Airborne Lidar Data, The International Symposium on Mobile Mapping Technology 2013, May.1-3, Tainan, Taiwan, CD-ROM.
  16. Teo, T.A., and Kao, C.H., 2012. Line-based multi-image matching for fa岬de reconstruction, International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, Vol. XXXIX-B3,63-68.
  17. Teo, T. A., and Chen, S. Y., 2011, Feature-based Image Registration of ALOS PALSAR and AVNIR-2 Images, IEEE International Geoscience and Remote Sensing Symposium, pp.566-569.
  18. Wang, M.S., and Teo, T.A., 2011. Hyperspectral Data Discrimination Based on Ensemble Empirical Mode Decomposition. Proceedings of The International Conference on Remote Sensing Environmental and Transportation Engineering.
  19. Tsai, F., Teo, T.A., Chen, L.C., and Chen, S.J., 2009. Construction and Visualization of Photo-Realistic Three-Dimensional Digital City, The 5th IEEE GRSS/ISPRS Workshop on Data Fusion And Remote Sensing over Urban Areas, CD-ROM.
  20. Teo, T.A., 2008. Parametric Reconstruction for Complex Building from Lidar and Vector Maps using a Divide-and-conquer Strategy. International Archives of Photogrammetry and Remote Sensing, Vol.37, Part B3a, pp.133-138.
  21. Teo, T.A., Chen, L.C., Cheng, H.K. and Liu, H.T., 2008, Building Reconstruction By Combining 2-D Topographic Maps And Highly Overlapped Aerial Images, Proceedings of Asian Conference on Remote Sensing, Nov. 10-14, Colombo, Sri Lanka, CD-ROM.
  22. Teo, T.A. and Chen, L.C., 2007, Registration of Image and Vector Data Using Point and Line Features, 2007 Remote Sensing Symposium accross Taiwan Strait, CD-Rom.
  23. Teo, T.A., and Chen, L.C., 2007, On The Analysis of Lidar Point Density for Roof Shaping, Proceedings of Asian Conference on Remote Sensing, Nov. 12-16, Kuala Lumpur, Malaysia, CD-ROM.
  24. Teo. T.A., Rau, J.Y., and Chen, L.C., 2006. 3D Building Models: Geoinformation for Disaster Management, 2006 Taiwan-Japan Symposium on the Advancement of Urban Earthquake Hazard Mitigation Technology, pp. A13-1~A13-8.
  25. Teo, T.A., Rau, J.Y., Chen, L.C., Liu, J.K., and Hsu, W.C., 2006. Reconstruction of Complex Buildings using Lidar and 2D Maps, Lecture Notes in Geoinformation and Cartography, pp.345-354.
  26. Teo, T.A., Hsieh, C.H., and Rau, J.Y., 2006, Reconstruction of Building Models with Curvilinear Boundaries from Laser Scanner and Aerial Imagery, Lecture Notes in Computer Science. Vol.4319.pp.24-33.
  27. Chen, L.C., Teo, T.A., and Chiang, T.W., 2006, The Generation of 3D Tree Models by the Integration of Multi-Sensor Data, Lecture Notes in Computer Science. Vol.4319.pp.34-43.
  28. Rau, J.Y., Teo, T.A., Chen, L.C., Tsai, F., Hsiao, K.H., and Hsu, W.C., 2006, Integration of GPS, GIS and Photogrammetry for Texture Mapping in Photo-Realistic City Modeling, Lecture Notes in Computer Science. Vol.4319.pp.1283-1292.
  29. T.A., Chen, L.C., Liu, J.K., and Hsu, W.C., 2005. Building Reconstruction from Lidar Data using Iterative Regularization Approach, Proceedings of Asian Conference on Remote Sensing, Nov. 7-11, Hanoi, Vietnam, CD-ROM.
  30. Chen, L. C., Teo, T. A., and Liu, C. L., 2005, Rigorous Georeferencing for Formosat-2 Satellite Images by Least Squares Collocation, IEEE International Geoscience and Remote Sensing Symposium, Vol.5, pp.3526-3530.
  31. Chen, L. C., Teo, T. A., Rau, J. Y., Liu, J. K. and Hsu, W.C., 2005, Building Reconstruction from Lidar Data and Aerial Imagery, IEEE International Geoscience and Remote Sensing Symposium, Vol.4, pp.2846-2849.
專書及專書論文
  1. Teo, T.A., 2008. A Divide-and-Conquer Strategy for Building Reconstruction Using Lidar Point Clouds and Topographic Maps. Ph.D. Dissertation, National Central University, Jhungli, Taiwan, 119 pp.
  2. 張智安,2002,EROS A 衛星影像幾何改正,碩士論文,國立中央大學土木工程研究所,中壢,72頁.

最後更新日期: Mon, 2017-02-20 5:52 PM

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Department of Civil Engineering in National Chiao Tung University