The aim of this work is to present a comparison among three software applications currently available for the Occipital Structure SensorTM; all these software were developed for collecting 3D models of objects easily and in real-time with this structured light range camera. The SKANECT, itSeez3D and Scanner applications were thus tested: a DUPLOTM bricks construction was scanned with the three applications and the obtained models were compared to the model virtually generated with a standard CAD software, which served as reference. The results demonstrate that all the software applications are generally characterized by the same level of geometric accuracy, which amounts to very few millimetres. However, the itSeez3D software, which requires a payment of $7 to export each model, represents surely the best solution, both from the point of view of the geometric accuracy and, mostly, at the level of the color restitution. On the other hand, Scanner, which is a free software, presents an accuracy comparable to that of itSeez3D. At the same time, though, the colors are often smoothed and not perfectly overlapped to the corresponding part of the model. Lastly, SKANECT is the software that generates the highest number of points, but it has also some issues with the rendering of the colors.

3D modelling by low-cost range camera: software evaluation and comparison / Ravanelli, Roberta; Lastilla, Lorenzo.; Crespi, Mattia. - In: INTERNATIONAL ARCHIVES OF THE PHOTOGRAMMETRY, REMOTE SENSING AND SPATIAL INFORMATION SCIENCES. - ISSN 2194-9034. - ELETTRONICO. - 42:2/W8(2017), pp. 209-212. (Intervento presentato al convegno Sensors, Algorithms, Applications. 5th International Workshop LowCost 3D, 28–29 November 2017, Hamburg, Germany tenutosi a Hamburg, Germany) [10.5194/isprs-archives-XLII-2-W8-209-2017].

3D modelling by low-cost range camera: software evaluation and comparison

Ravanelli, Roberta
Primo
;
Lastilla, Lorenzo.
Secondo
;
Crespi, Mattia
Ultimo
2017

Abstract

The aim of this work is to present a comparison among three software applications currently available for the Occipital Structure SensorTM; all these software were developed for collecting 3D models of objects easily and in real-time with this structured light range camera. The SKANECT, itSeez3D and Scanner applications were thus tested: a DUPLOTM bricks construction was scanned with the three applications and the obtained models were compared to the model virtually generated with a standard CAD software, which served as reference. The results demonstrate that all the software applications are generally characterized by the same level of geometric accuracy, which amounts to very few millimetres. However, the itSeez3D software, which requires a payment of $7 to export each model, represents surely the best solution, both from the point of view of the geometric accuracy and, mostly, at the level of the color restitution. On the other hand, Scanner, which is a free software, presents an accuracy comparable to that of itSeez3D. At the same time, though, the colors are often smoothed and not perfectly overlapped to the corresponding part of the model. Lastly, SKANECT is the software that generates the highest number of points, but it has also some issues with the rendering of the colors.
2017
Sensors, Algorithms, Applications. 5th International Workshop LowCost 3D, 28–29 November 2017, Hamburg, Germany
range camera; occipital structure sensorTM; 3D modelling; software comparison
04 Pubblicazione in atti di convegno::04c Atto di convegno in rivista
3D modelling by low-cost range camera: software evaluation and comparison / Ravanelli, Roberta; Lastilla, Lorenzo.; Crespi, Mattia. - In: INTERNATIONAL ARCHIVES OF THE PHOTOGRAMMETRY, REMOTE SENSING AND SPATIAL INFORMATION SCIENCES. - ISSN 2194-9034. - ELETTRONICO. - 42:2/W8(2017), pp. 209-212. (Intervento presentato al convegno Sensors, Algorithms, Applications. 5th International Workshop LowCost 3D, 28–29 November 2017, Hamburg, Germany tenutosi a Hamburg, Germany) [10.5194/isprs-archives-XLII-2-W8-209-2017].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1122691
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