Zitieren

Bernard, C., Mills, J. P., Talaya, J. & Remondino, F. (2019). Investigation into the potential of single photon airborne laser scanning technology. ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, 42, 927–934.10.5194/isprs-archives-XLII-2-W13-927-2019 Search in Google Scholar

Clifton, W. E., Steele B., Nelson G., Truscott A., Itzler M., & Entwistle M. (2015). Medium altitude airborne geiger-mode mapping lidar system. Proc. SPIE, 9465, 9465 – 9465 – 8.10.1117/12.2193827 Search in Google Scholar

Degnan, J. J., (2016). Scanning, Multibeam, Single Photon Lidars for Rapid, Large Scale, High Resolution, Topographic and Bathymetric Mapping. Remote Sensing, 8(11), 923–958.10.3390/rs8110958 Search in Google Scholar

Degnan, J. J. (2018). Airborne and spaceborne single photon 3d imaging lidars. 21st International Workshop on Laser Ranging. Search in Google Scholar

Harris (2019). Website of Harris Geiger-mode LiDAR. https://www.harris.com/solution/geiger-mode-lidar (last accessed: 2019-01-11). Search in Google Scholar

Hartzell, P., Dang, Z., Pan, Z. & Glennie, C. (2018). Radiometric evaluation of an airborne single photon lidar sensor. IEEE Geoscience and Remote Sensing Letters, 15(9), 1466–1470.10.1109/LGRS.2018.2841811 Search in Google Scholar

Mallet, C., & Bretar, F. (2009). Full-waveform topographic lidar: State-of-the-art. ISPRS Journal of Photogrammetry and Remote Sensing, 64(1), 1 – 16.10.1016/j.isprsjprs.2008.09.007 Search in Google Scholar

Mandlburger, G. & Jutzi, B., (2018). Feasibility Investigation on Single Photon Lidar Based Water Surface Mapping. ISPRS Annals of Photogrammetry, Remote Sensing & Spatial Information Sciences 4, 10–12.10.5194/isprs-annals-IV-1-109-2018 Search in Google Scholar

Mandlburger, G., Lehner, H. & Pfeifer, N. (2019). A comparison of single photon and full waveform lidar. ISPRS Annals of Photogrammetry, Remote Sensing and Spatial Information Sciences 4, 397–404.10.5194/isprs-annals-IV-2-W5-397-2019 Search in Google Scholar

Leica (2019). Leica SPL100 single photon LiDAR sensor data sheet. https://leicageosystems.com/products/airbornesystems/topographic-lidar-sensors/leica-spl100. Search in Google Scholar

Pfennigbauer, M., Wolf, C., Weinkopf, J. & Ullrich, A. (2014).Online waveform processing for demanding target situations. In: Proc. SPIE, 90800J.10.1117/12.2052994 Search in Google Scholar

Stoker, J. M., Abdullah, Q. A., Nayegandhi, A., Winehouse, J. (2016). Evaluation of Single Photon and Geiger Mode Lidar for the 3D Elevation Program. Remote Sensing, 8(9), 716–767.10.3390/rs8090767 Search in Google Scholar

Sugarbaker, L. J., Constance, E. W., Heidemann, H. K., Jason, A. L., Lukas, V., Saghy, D. L., & Stoker, J. M., 2014. The 3D Elevation Program Initiative — A Call for Action. USGS Circular 1399.10.3133/cir1399 Search in Google Scholar

Ullrich, A., & Pfennigbauer, M. (2018). Noisy lidar point clouds: impact on information extraction in high-precision lidar sur veying, Proc. SPIE, 10636, 10636 – 10636 – 6.10.1117/12.2304351 Search in Google Scholar

eISSN:
2391-9477
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
Volume Open
Fachgebiete der Zeitschrift:
Geowissenschaften, Geografie, Kartografie und Photogrammetrie, Geophysik, Fernerkundung