A novel automated method for the improvement of photogrammetric DTM accuracy in forests

Accuracy of a Digital Terrain Model (DTM) in a complex forest environment is critical and yet challenging for accurate forest inventory and management, disaster risk analysis, and timber utilization. Reducing elevation errors in photogrammetric DTM (DTMPHM), which present the national standard in ma...

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Permalink: http://skupni.nsk.hr/Record/nsk.NSK01001033114/Details
Matična publikacija: Šumarski list (Online)
142 (2018), 11/12 ; str. 567-577
Glavni autori: Gašparović, Mateo (Author), Šimić Milas, Anita, Seletković, Ante, Balenović, Ivan, inženjer šumarstva
Vrsta građe: e-članak
Jezik: eng
Predmet:
Online pristup: https://doi.org/10.31298/sl.142.11-12.1
Hrčak
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024 7 |2 doi  |a 10.31298/sl.142.11-12.1 
035 |a (HR-ZaNSK)001033114 
040 |a HR-ZaNSK  |b hrv  |c HR-ZaNSK  |e ppiak 
041 0 |a eng  |b eng  |b hrv 
042 |a croatica 
044 |a ci  |c hr 
080 1 |a 630  |2 2011 
080 1 |a 528  |2 2011 
100 1 |a Gašparović, Mateo  |4 aut 
245 1 2 |a A novel automated method for the improvement of photogrammetric DTM accuracy in forests  |h [Elektronička građa] /  |c Mateo Gašparović, Anita Simic Milas, Ante Seletković, Ivan Balenović. 
246 1 1 |a Nova automatska metoda za poboljšanje točnosti fotogrametrijskog DTM-a u šumama 
300 |b Ilustr. 
504 |a Bibliografija: str. 575-576. 
504 |a Summary ; Sažetak. 
520 |a Accuracy of a Digital Terrain Model (DTM) in a complex forest environment is critical and yet challenging for accurate forest inventory and management, disaster risk analysis, and timber utilization. Reducing elevation errors in photogrammetric DTM (DTMPHM), which present the national standard in many countries worldwide, is critical, especially for forested areas. In this paper, a novel automated method to detect the errors and to improve the accuracy of DTMPHM for the lowland forest has been presented and evaluated. This study was conducted in the lowland pedunculate oak forest (Pokupsko Basin, Croatia). The DTMPHM was created from three-dimensional (3D) vector data collected by aerial stereo-photogrammetry in combination with data collected from existing maps and field surveys. These data still present the national standard for DTM generation in many countries, including Croatia. By combining slope and tangential curvature values of raster DTMPHM, the proposed method developed in open source Grass GIS software automatically detected 91 outliers or 3.2% of the total number of source points within the study area. Comparison with a highly accurate LiDAR DTM confirmed the method efficiency. This was especially evident in two out of three observed subset areas where the root mean square error (RMSE) values decreased for 8% in one and 50% in another area after errors elimination. The method could be of great importance to other similar studies for forested areas in countries where the LiDAR data are not available. 
653 |a LIDAR 
653 0 |a Digitalni model reljefa  |a Nizinska šumska područja  |a Fotogrametrija 
700 1 |a Šimić Milas, Anita  |4 aut 
700 1 |a Seletković, Ante  |4 aut 
700 1 |a Balenović, Ivan,  |c inženjer šumarstva  |4 aut 
773 0 |t Šumarski list (Online)  |x 1846-9140  |g 142 (2018), 11/12 ; str. 567-577  |w nsk.(HR-ZaNSK)000670522 
981 |b Be2018  |b B01/18 
998 |b dalo1907  |b boki2103 
856 4 0 |u https://doi.org/10.31298/sl.142.11-12.1 
856 4 1 |y Digitalna.nsk.hr 
856 4 0 |u https://hrcak.srce.hr/212745  |y Hrčak