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Investigating the potential use of RADARSAT-2 and UAS imagery for monitoring the restoration of Peatlands; White, L; McGovern, M; Hayne, S; Touzi, R; Pasher, J; Duffe, J. Remote Sensing vol. 12, issue 15, 2383, 2020 p. 1-33, https://doi.org/10.3390/RS12152383 Open Access logo Open Access (NRCan Cont.# 20200389)
 


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Mer Bleue, Ontario, Arctic surrogate study-site project, 2019 update, global navigation satellite system survey report; Prévost, C; White, H PORCID logo. Geomatics Canada, Open File 61, 2020, 182 pages, https://doi.org/10.4095/326160 Open Access logo Open Access
 
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Off-the-shelf unmanned aerial vehicles for 3D vegetation mapping; Leblanc, S GORCID logo. Geomatics Canada, Open File 57, 2020, 28 pages, https://doi.org/10.4095/326065 Open Access logo Open Access
 
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2016 unmanned aerial vehicle study at Mer Bleue, Ontario; Leblanc, S GORCID logo; White, H PORCID logo. Geomatics Canada, Open File 58, 2020, 27 pages, https://doi.org/10.4095/326066 Open Access logo Open Access
 
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Testing the potential of UAV photogrammetry for deriving bare earth models in Arctic shrublands; Fraser, R H; Lantz, T C; McFarlane-Winchester, M; van der Sluijs, J; Prévost, C. Geomatics Canada, Open File 54, 2020, 20 pages, https://doi.org/10.4095/321447 Open Access logo Open Access
 
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Effectiveness of aerial and ISERV-ISS RGB photos for real-time urban floodwater mapping: case of Calgary 2013 flood; Zhang, Y; Canisius, F; Zhen, C; Feng, B; Crawford, P; Huang, L. Journal of Applied Remote Sensing vol. 13, issue 4, 044521, 2019 p. 1-15, https://doi.org/10.1117/1.JRS.13.044521 (NRCan Cont.# 20200474)
 


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Mer Bleue, Ontario, Arctic surrogate study site project, 2018 update: global navigation satellite system survey report; Prévost, C; White, H PORCID logo. Geomatics Canada, Open File 46, 2019, 93 pages, https://doi.org/10.4095/314595 Open Access logo Open Access
 
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A UAV-based sensor system for measuring land surface albedo: tested over a boreal peatland ecosystem; Canisius, F; Wang, S; Croft, H; Leblanc, S G; Russell, H A J; Chen, J; Wang, R. Drones vol. 3, issue 1, 27, 2019 p. 1-20, https://doi.org/10.3390/drones3010027 Open Access logo Open Access (NRCan Cont.# 20190166)
 


Monitoring snow depth change across a range of landscapes with ephemeral snowpacks using structure from motion applied to lightweight unmanned aerial vehicle videos; Fernandes, R; Prevost, C; Canisius, F; Leblanc, S G; Maloley, M; Oakes, S; Holman, K; Knudby, A. The Cryosphere vol. 12, issue 11, 2018 p. 3535-3550, https://doi.org/10.5194/tc-12-3535-2018 Open Access logo Open Access (NRCan Cont.# 20190614)
 


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Relevé GPS de cibles de référence au site test de Quinte, Ontario, dans le cadre du projet d'évaluation de l'épaisseur de neige par aéronef sans pilote; Prévost, C; Langlois, A; Gervais-Gosselin, X; Kramer, D. Geomatics Canada, Open File 40, 2018, 59 pages, https://doi.org/10.4095/308409 Open Access logo Open Access
 
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Mer Bleue, Ontario, Arctic surrogate study site project 2015 - GPS survey report; Prévost, C; White, H PORCID logo. Geomatics Canada, Open File 29, 2016, 59 pages, https://doi.org/10.4095/299442 Open Access logo Open Access
 
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Ground control point acquisition for Acadia Forest, New Brunswick, during winter 2016, in support of Canada Centre for Mapping and Earth Observation snow depth from unmanned aerial vehicule activities.; Prévost, C; Fernandes, R; Canisius, F. Geomatics Canada, Open File 27, 2016, 42 pages, https://doi.org/10.4095/299101 Open
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Relevé GPS de cibles de référence au site test de Gatineau, Québec, dans le cadre du projet d'évaluation de l'épaisseur de neige par aéronef sans pilote; Prévost, C; Fernandes, R. Geomatics Canada, Open File 26, 2016, 67 pages, https://doi.org/10.4095/299047 Open Access logo Open Access
 
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