The development of training platform for CiADS using cave automatic virtual environment

The project of China initiative Accelerator Driven Subcritical (CiADS) system has been started to construct in southeast China's Guangdong province since 2019, which is expected to be checked and accepted in the year 2025. In order to make the students in University of Chinese Academy of Scienc...

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Main Authors: Jin-Yang Li, Jun-Liang Du, Long Gu, You-Peng Zhang, Xin Sheng, Cong Lin, Yongquan Wang
Format: Article
Language:English
Published: Elsevier 2023-07-01
Series:Nuclear Engineering and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S173857332300150X
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author Jin-Yang Li
Jun-Liang Du
Long Gu
You-Peng Zhang
Xin Sheng
Cong Lin
Yongquan Wang
author_facet Jin-Yang Li
Jun-Liang Du
Long Gu
You-Peng Zhang
Xin Sheng
Cong Lin
Yongquan Wang
author_sort Jin-Yang Li
collection DOAJ
description The project of China initiative Accelerator Driven Subcritical (CiADS) system has been started to construct in southeast China's Guangdong province since 2019, which is expected to be checked and accepted in the year 2025. In order to make the students in University of Chinese Academy of Sciences (UCAS) better understand the main characteristic and the operation condition in the subcritical nuclear facility, the training platform for CiADS has been developed based on the Cave Automatic Virtual Environment (CAVE) in the Institute of Modern Physics Chinese Academy of Sciences (IMPCAS). The CAVE platform is a kind of non-head mounted virtual reality display system, which can provide the immersive experience and the alternative training platform to substitute the dangerous operation experiments with strong radioactivity. In this paper, the CAVE platform for the training scenarios in CiADS system has been presented with real-time simulation feature, where the required devices to generate the auditory and visual senses with the interactive mode have been detailed. Moreover, the three dimensional modeling database has been created for the different operation conditions, which can bring more freedom for the teachers to generate the appropriate training courses for the students. All the user-friendly features will offer a deep realistic impression to the students for the purpose of getting the required knowledge and experience without the large costs in the traditional experimental nuclear reactor.
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spelling doaj.art-1c1350b0e8c54fd3bb11bbd0a1eb8ca02023-06-23T04:42:45ZengElsevierNuclear Engineering and Technology1738-57332023-07-0155726562661The development of training platform for CiADS using cave automatic virtual environmentJin-Yang Li0Jun-Liang Du1Long Gu2You-Peng Zhang3Xin Sheng4Cong Lin5Yongquan Wang6School of Nuclear Science and Technology, Lanzhou University, Lanzhou, 730000, ChinaSchool of Nuclear Science and Technology, Lanzhou University, Lanzhou, 730000, ChinaSchool of Nuclear Science and Technology, Lanzhou University, Lanzhou, 730000, China; Corresponding author.Institute of Modern Physics, Fudan University, Shanghai, 200433, ChinaSchool of Nuclear Science and Technology, University of Chinese Academy of Sciences, Beijing, 100049, China; Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou, 730000, ChinaSchool of Nuclear Science and Technology, Lanzhou University, Lanzhou, 730000, ChinaSchool of Nuclear Science and Technology, Lanzhou University, Lanzhou, 730000, ChinaThe project of China initiative Accelerator Driven Subcritical (CiADS) system has been started to construct in southeast China's Guangdong province since 2019, which is expected to be checked and accepted in the year 2025. In order to make the students in University of Chinese Academy of Sciences (UCAS) better understand the main characteristic and the operation condition in the subcritical nuclear facility, the training platform for CiADS has been developed based on the Cave Automatic Virtual Environment (CAVE) in the Institute of Modern Physics Chinese Academy of Sciences (IMPCAS). The CAVE platform is a kind of non-head mounted virtual reality display system, which can provide the immersive experience and the alternative training platform to substitute the dangerous operation experiments with strong radioactivity. In this paper, the CAVE platform for the training scenarios in CiADS system has been presented with real-time simulation feature, where the required devices to generate the auditory and visual senses with the interactive mode have been detailed. Moreover, the three dimensional modeling database has been created for the different operation conditions, which can bring more freedom for the teachers to generate the appropriate training courses for the students. All the user-friendly features will offer a deep realistic impression to the students for the purpose of getting the required knowledge and experience without the large costs in the traditional experimental nuclear reactor.http://www.sciencedirect.com/science/article/pii/S173857332300150XCiADSTraining scenarioVirtual realityRadiation safetyNuclear engineering
spellingShingle Jin-Yang Li
Jun-Liang Du
Long Gu
You-Peng Zhang
Xin Sheng
Cong Lin
Yongquan Wang
The development of training platform for CiADS using cave automatic virtual environment
Nuclear Engineering and Technology
CiADS
Training scenario
Virtual reality
Radiation safety
Nuclear engineering
title The development of training platform for CiADS using cave automatic virtual environment
title_full The development of training platform for CiADS using cave automatic virtual environment
title_fullStr The development of training platform for CiADS using cave automatic virtual environment
title_full_unstemmed The development of training platform for CiADS using cave automatic virtual environment
title_short The development of training platform for CiADS using cave automatic virtual environment
title_sort development of training platform for ciads using cave automatic virtual environment
topic CiADS
Training scenario
Virtual reality
Radiation safety
Nuclear engineering
url http://www.sciencedirect.com/science/article/pii/S173857332300150X
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