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Research Article

Optimal flight parameters for unmanned aerial vehicles collecting spatial information for estimating large-scale waste generation

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Pages 8010-8030 | Received 13 Apr 2018, Accepted 30 Jan 2019, Published online: 26 Apr 2019

References

  • Aber, J., I. Marzolff, and J. B. Ries. 2010. Small Format Aerial Photography: Principles, Techniques and Geoscience Applications. Amsterdam: Elsevier.
  • Agüera-Vega, F., F. Carvajal-Ramírez, and P. Martínez-Carricondo. 2017. “Assessment of Photogrammetric Mapping Accuracy Based on Variation Ground Control Points Number Using Unmanned Aerial Vehicle.” Measurement 98: 221–227. doi:10.1016/j.measurement.2016.12.002.
  • Asari, M., S. Sakai, T. Yoshioka, Y. Tojo, T. Tasaki, H. Takigami, and K. Watanabe. 2013. “Strategy for Separation and Treatment of Disaster Waste: A Manual for Earthquake and Tsunami Disaster Waste Management in Japan.” Journal of Material Cycles and Waste Management 15 (3): 290–299. doi:10.1007/s10163-013-0154-5.
  • Basnayake, B. F. A., C. Chiemchaisri, and C. Visvanathan. 2006. “Wastelands: Clearing up after the Tsunami in Sri Lanka and Thailand.” Waste Management World 2006: 31–38.
  • Brown, C., M. Milke, and E. Seville. 2011. “Disaster Waste Management: A Review Article.” Waste Management 31 (6): 1085–1098. doi:10.1016/j.wasman.2011.01.027.
  • Chen, J. R., H. Y. Tsai, P. C. Hsu, and C. C. Shen. 2007. “Estimation of Waste Generation from Floods.” Waste Management 27 (12): 1717–1724. doi:10.1016/j.wasman.2006.10.015.
  • Coveney, S., and K. Roberts. 2017. “Lightweight UAV Digital Elevation Models and Orthoimagery for Environmental Applications: Data Accuracy Evaluation and Potential for River Flood Risk Modelling.” International Journal of Remote Sensing 38 (8–10): 3159–3180. doi:10.1080/01431161.2017.1292074.
  • EPA. 2008. Planning for Natural Disaster Debris. U.S: Environmental Protection Agency.
  • FEMA. 2007. Public Assistance: Debris Monitoring Guide. Washington, DC: Federal Emergency Management Agency.
  • Gašparović, M., and D. Gajski. 2016. “Two-Step Camera Calibration Method Developed for Micro UAV‘s.” The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLI-B1: 829–833. doi:10.5194/isprsarchives-XLI-B1-829-2016.
  • Gašparović, M., and L. Jurjević. 2017. “Gimbal Influence on the Stability of Exterior Orientation Parameters of UAV Acquired Images.” Sensors 17 (2): 401. doi:10.3390/s17050968.
  • Harwin, S., and A. Lucieer. 2012. “Assessing the Accuracy of Georeferenced Point Clouds Produced via Multi-View Stereopsis from Unmanned Aerial Vehicle (UAV) Imagery.” Remote Sensing 4 (6): 1573–7599. doi:10.3390/rs4061573.
  • Hugenholtz, C. H., J. Walker, O. Brown, and S. Myshak. 2015. “Earthwork Volumetrics with an Unmanned Aerial Vehicle and Softcopy Photogrammetry.” Journal of Surveying Engineering 141 (1): 06014003. doi:10.1061/(ASCE)SU.1943-5428.0000138.
  • Jeong, S. 2011. “Evaluation of Long-Term Stability of Interior Orientation Parameters of a Non-Metric Camera.” Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography 29 (3): 283–291. doi:10.7848/ksgpc.2011.29.3.283.
  • Juan, L., and O. Gwun. 2009. “A Comparison of SIFT, PCA-SIFT and SURF.” International Journal of Image Processing 3: 143–152.
  • Mesas-Carrascosa, F. J., M. D. N. García, J. E. M. Larriva, and A. García-Ferrer. 2016. “An Analysis of the Influence of Flight Parameters in the Generation of Unmanned Aerial Vehicle (UAV) Orthomosaicks to Survey Archaeological Areas.” Sensors 16 (11): 1838. doi:10.3390/s16122100.
  • Mesas-Carrascosa, F. J., J. Torres-Sánchez, I. Clavero-Rumbao, A. García-Ferrer, J. M. Peña, I. Borra-Serrano, and F. López-Granados. 2015. “Assessing Optimal Flight Parameters for Generating Accurate Multispectral Orthomosaicks by UAV to Support Site-Specific Crop Management.” Remote Sensing 7 (10): 12793–12814. doi:10.3390/rs71012793.
  • Pérez, M., F. Agüera, and F. Carvajal. 2013. “Low Cost Surveying Using an Unmanned Aerial Vehicle.” The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences 40: 311–315. doi:10.5194/isprsarchives-XL-1-W2-311-2013.
  • Raeva, P. L., S. L. Filipova, and D. G. Filipov. 2016. “Volume Compution of A Stockpile-A Study Case Comparing GPS and UAV Measurements in an Open Pit Quarry.” International Archives of the Photogrammetry, Remote Sensing & Spatial Information Sciences 41: 999–1004. doi:10.5194/isprsarchives-XLI-B1-999-2016.
  • Reinhart, D. R., and P. T. McCreanor. 1999. Disaster Debris Management – Planning Tools. U.S: Environmental Protection Agency.
  • Remondino, F., and S. El-Hakim. 2006. “Image-Based 3D Modelling: A Review.” The Photogrammetric Record 21: 269–291. doi:10.1111/(ISSN)1477-9730.
  • Rhodes, R. K. 2017. “UAS as an Inventory Tool: A Photogrammetric Approach to Volume Estimation.” Theses and Dissertations 2424.
  • Siebert, S., and J. Teizer. 2014. “Mobile 3D Mapping for Surveying Earthwork Projects Using an Unmanned Aerial Vehicle (UAV) System.” Automation in Construction 41: 1–14. doi:10.1016/j.autcon.2014.01.004.
  • Snavely, N., S. M. Seitz, and R. Szeliski. 2007. “Modelling the World from Internet Photo Collections.” International Journal of Computer Vision 80: 189–210. doi:10.1007/s11263-007-0107-3.
  • Son, S. W., J. H. Yoon, J. H. Jo, T. H. Kim, and H. J. Jeon. 2016. Analysis of Disaster Response Technologies that Use Drones and Trend of Research. Sejong: Korea Environmental Institute.
  • Uysal, M., A. S. Toprak, and N. Polat. 2015. “DEM Generation with UAV Photogrammetry and Accuracy Analysis in Sahitler Hill.” Measurement 73: 539–543. doi:10.1016/j.measurement.2015.06.010.
  • Vasuki, Y., E. J. Holden, P. Kovesi, and S. Micklethwaite. 2014. “Semi-Automatic Mapping of Geological Structures Using UAV-based Photogrammetric Data: An Image Analysis Approach.” Computers and Geosciences 69: 22–32. doi:10.1016/j.cageo.2014.04.012.
  • Westoby, M. J., J. Brasington, M. J. Glasser, M. J. Hambrey, and J. M. Reynolds. 2012. “Structure from Motion Photogrammetry: A Low Cost, Effective Tool for Geoscience Applications.” Geomorphology 179: 300–314. doi:10.1016/j.geomorph.2012.08.021.
  • Yilmaz, H. M. 2010. “Close Range Photogrammetry in Volume Computing.” Experimental Techniques 34 (1): 48–54. doi:10.1111/(ISSN)1747-1567.
  • Yoo, I. S. 2015. “Disaster Planning in Korea.” Hanyang Medical Reviews 35: 157–173. doi:10.7599/hmr.2015.35.3.157.
  • Yoo, Y. H., J. W. Choi, S. K. Choi, and S. H. Jung. 2016. “Quality Evaluation of Orthoimage and DSM Based on Fixed-Wing UAV Corresponding to Overlap and GCPs.” Journal of the Korean Society for Geospatial Information Science 24 (3): 3–9. doi:10.7319/kogsis.2016.24.3.003.
  • Yu, J. J., S. W. Son, H. S. Park, H. J. Jeon, and J. H. Yoon. 2017. “Evaluation of DSM Accuracy Based on UAS with respect to Camera Calibration Methods and Application of Interior Orientation Parameters.” Korean Journal of Remote Sensing 33 (5–3): 787–798.

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