Simulation of the preparation and face drilling processes with laser scanning and automated marking of the drilling grid

The article discusses the methods of calculating the drilling and blasting scheme and constructing a drilling grid, manual and automatic calculation options are compared. A method for automatically constructing a drilling grid based on laser scanning is proposed. Moreover, the proposed method can be...

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Main Authors: Volkova Evgeniya, Druzhinin Aleksey, Kuzminykh Roman, Poluzadov Vladimir
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/37/e3sconf_umd2020_01010.pdf
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spelling doaj-27497e506fe243e6aaf31969e89ec6c42021-04-02T09:55:27ZengEDP SciencesE3S Web of Conferences2267-12422020-01-011770101010.1051/e3sconf/202017701010e3sconf_umd2020_01010Simulation of the preparation and face drilling processes with laser scanning and automated marking of the drilling gridVolkova Evgeniya0Druzhinin Aleksey1Kuzminykh Roman2Poluzadov Vladimir3Ural State Mining UniversityUral State Mining UniversityUral State Mining UniversityUral State Mining UniversityThe article discusses the methods of calculating the drilling and blasting scheme and constructing a drilling grid, manual and automatic calculation options are compared. A method for automatically constructing a drilling grid based on laser scanning is proposed. Moreover, the proposed method can be implemented using cheap equipment - a laser rangefinder and an Arduino microcomputer. Based on the data of the laser rangefinder with openCV and SciPy libraries, a polygonal 3D model of the face is built. The transfer of the drilling grid to the 3D model is implemented using the bilinear interpolation algorithm. The constructed polygonal model can be improved by making changes to the construction algorithm, since it is developed by the authors and can be further developed. The simulation model is created in Anylogic software and shows the drilling process taking into account the previously calculated drilling pattern. The proposed models can be used as a basis for further research and software development.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/37/e3sconf_umd2020_01010.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Volkova Evgeniya
Druzhinin Aleksey
Kuzminykh Roman
Poluzadov Vladimir
spellingShingle Volkova Evgeniya
Druzhinin Aleksey
Kuzminykh Roman
Poluzadov Vladimir
Simulation of the preparation and face drilling processes with laser scanning and automated marking of the drilling grid
E3S Web of Conferences
author_facet Volkova Evgeniya
Druzhinin Aleksey
Kuzminykh Roman
Poluzadov Vladimir
author_sort Volkova Evgeniya
title Simulation of the preparation and face drilling processes with laser scanning and automated marking of the drilling grid
title_short Simulation of the preparation and face drilling processes with laser scanning and automated marking of the drilling grid
title_full Simulation of the preparation and face drilling processes with laser scanning and automated marking of the drilling grid
title_fullStr Simulation of the preparation and face drilling processes with laser scanning and automated marking of the drilling grid
title_full_unstemmed Simulation of the preparation and face drilling processes with laser scanning and automated marking of the drilling grid
title_sort simulation of the preparation and face drilling processes with laser scanning and automated marking of the drilling grid
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description The article discusses the methods of calculating the drilling and blasting scheme and constructing a drilling grid, manual and automatic calculation options are compared. A method for automatically constructing a drilling grid based on laser scanning is proposed. Moreover, the proposed method can be implemented using cheap equipment - a laser rangefinder and an Arduino microcomputer. Based on the data of the laser rangefinder with openCV and SciPy libraries, a polygonal 3D model of the face is built. The transfer of the drilling grid to the 3D model is implemented using the bilinear interpolation algorithm. The constructed polygonal model can be improved by making changes to the construction algorithm, since it is developed by the authors and can be further developed. The simulation model is created in Anylogic software and shows the drilling process taking into account the previously calculated drilling pattern. The proposed models can be used as a basis for further research and software development.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/37/e3sconf_umd2020_01010.pdf
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AT kuzminykhroman simulationofthepreparationandfacedrillingprocesseswithlaserscanningandautomatedmarkingofthedrillinggrid
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