Design and application of intelligent blasthole detection and path planning system

The charging operation of roadway excavation by drilling and blasting is an important process link of tunnel excavation. The traditional charging process has a low degree of mechanization and relies on manual operation, which is time-consuming, labor-intensive and unsafe. In order to solve the probl...

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Main Authors: Qingyu JIN, Zhongwen YUE, Meng REN, Kejun XUE, Shan PAN
Format: Article
Language:zho
Published: Editorial Department of Coal Science and Technology 2024-11-01
Series:Meitan kexue jishu
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Online Access:http://www.mtkxjs.com.cn/article/doi/10.12438/cst.2024–0702
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author Qingyu JIN
Zhongwen YUE
Meng REN
Kejun XUE
Shan PAN
author_facet Qingyu JIN
Zhongwen YUE
Meng REN
Kejun XUE
Shan PAN
author_sort Qingyu JIN
collection DOAJ
description The charging operation of roadway excavation by drilling and blasting is an important process link of tunnel excavation. The traditional charging process has a low degree of mechanization and relies on manual operation, which is time-consuming, labor-intensive and unsafe. In order to solve the problems of charging by drilling and blasting in tunnel excavation, an intelligent improvement scheme, intelligent blasthole detection and path planning system, is innovatively proposed based on deep learning and intelligent algorithm technology. The system can improve the charging accuracy and construction efficiency, and provide technical support for intelligent charging of drilling and blasting. The system architecture consists of data access layer, business logic layer and presentation layer, including modules such as image acquisition, data processing, blasthole detection, path planning and visualization interface. Firstly, the blasthole image data on the excavation working face is obtained by high-precision image sensors; secondly, the intelligent data processing and analysis of the blasthole intelligent detection model based on deep learning is adopted to realize accurate detection and identification of blasthole data; finally, the improved greedy algorithm is combined with the 2−opt local search algorithm to design a charging path planning algorithm, which realizes efficient planning and optimization of charging sequence. The system integrates visualization functions and provides intuitive blasthole data management, intelligent blasthole identification, blasthole data archiving, and charging path planning, which facilitates construction personnel to perform real-time monitoring and dynamic adjustment. The research results show that the accuracy of the system in blasthole detection can reach 96.24%, and the average calculation time of the path planning algorithm is about 100 milliseconds. The system can improve the efficiency, safety and intelligence level of charging during the drilling and blasting construction process, and serve the blasthole detection and path planning in the intelligent charging process of the drilling and blasting tunnel excavation.
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institution Kabale University
issn 0253-2336
language zho
publishDate 2024-11-01
publisher Editorial Department of Coal Science and Technology
record_format Article
series Meitan kexue jishu
spelling doaj-art-18475c04e75947dcad6f879bbed71cdf2024-12-12T06:03:39ZzhoEditorial Department of Coal Science and TechnologyMeitan kexue jishu0253-23362024-11-01521118619610.12438/cst.2024–07022024-0702Design and application of intelligent blasthole detection and path planning systemQingyu JIN0Zhongwen YUE1Meng REN2Kejun XUE3Shan PAN4School of Mechanics and Civil Engineering, China University of Mining and Technology-Beijing, Beijing 100083, ChinaSchool of Mechanics and Civil Engineering, China University of Mining and Technology-Beijing, Beijing 100083, ChinaSchool of Mechanics and Civil Engineering, China University of Mining and Technology-Beijing, Beijing 100083, ChinaSchool of Mechanics and Civil Engineering, China University of Mining and Technology-Beijing, Beijing 100083, ChinaDepartment of Artificialintelligence, China University of Mining and Technology-Beijing, Beijing 100083, ChinaThe charging operation of roadway excavation by drilling and blasting is an important process link of tunnel excavation. The traditional charging process has a low degree of mechanization and relies on manual operation, which is time-consuming, labor-intensive and unsafe. In order to solve the problems of charging by drilling and blasting in tunnel excavation, an intelligent improvement scheme, intelligent blasthole detection and path planning system, is innovatively proposed based on deep learning and intelligent algorithm technology. The system can improve the charging accuracy and construction efficiency, and provide technical support for intelligent charging of drilling and blasting. The system architecture consists of data access layer, business logic layer and presentation layer, including modules such as image acquisition, data processing, blasthole detection, path planning and visualization interface. Firstly, the blasthole image data on the excavation working face is obtained by high-precision image sensors; secondly, the intelligent data processing and analysis of the blasthole intelligent detection model based on deep learning is adopted to realize accurate detection and identification of blasthole data; finally, the improved greedy algorithm is combined with the 2−opt local search algorithm to design a charging path planning algorithm, which realizes efficient planning and optimization of charging sequence. The system integrates visualization functions and provides intuitive blasthole data management, intelligent blasthole identification, blasthole data archiving, and charging path planning, which facilitates construction personnel to perform real-time monitoring and dynamic adjustment. The research results show that the accuracy of the system in blasthole detection can reach 96.24%, and the average calculation time of the path planning algorithm is about 100 milliseconds. The system can improve the efficiency, safety and intelligence level of charging during the drilling and blasting construction process, and serve the blasthole detection and path planning in the intelligent charging process of the drilling and blasting tunnel excavation.http://www.mtkxjs.com.cn/article/doi/10.12438/cst.2024–0702intelligent explosive loadingblasthole detectionpath planningdrill and blast methodtechnical architecture
spellingShingle Qingyu JIN
Zhongwen YUE
Meng REN
Kejun XUE
Shan PAN
Design and application of intelligent blasthole detection and path planning system
Meitan kexue jishu
intelligent explosive loading
blasthole detection
path planning
drill and blast method
technical architecture
title Design and application of intelligent blasthole detection and path planning system
title_full Design and application of intelligent blasthole detection and path planning system
title_fullStr Design and application of intelligent blasthole detection and path planning system
title_full_unstemmed Design and application of intelligent blasthole detection and path planning system
title_short Design and application of intelligent blasthole detection and path planning system
title_sort design and application of intelligent blasthole detection and path planning system
topic intelligent explosive loading
blasthole detection
path planning
drill and blast method
technical architecture
url http://www.mtkxjs.com.cn/article/doi/10.12438/cst.2024–0702
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AT mengren designandapplicationofintelligentblastholedetectionandpathplanningsystem
AT kejunxue designandapplicationofintelligentblastholedetectionandpathplanningsystem
AT shanpan designandapplicationofintelligentblastholedetectionandpathplanningsystem