Research on an educational virtual training system for ship life-saving appliances

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-01-03 DOI:10.1002/cae.22708
Shaoyang Qiu, Hongxiang Ren, Delong Wang, Yizhou Qu, Jian Sun
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Abstract

Life-saving appliances (LSAs) play a crucial role in maritime emergencies, and seafarers need to undergo rigorous professional training on these appliances to ensure their competence in maritime work. However, traditional teaching and training that mainly rely on real appliances have several limitations. To address these limitations, we have developed a virtual training system that enables multiperson collaborative operation. To guarantee the system's scalability and versatility, the system framework is designed to be modular. In the networking function section, we establish a network architecture and apply state synchronization mechanisms to ensure consistent scenarios across multiusers. Additionally, we propose an interaction management model and an evaluation model for collaborative training and evaluation. Two collaborative training modes are designed to enhance the flexibility of the system. To evaluate the effectiveness of our system, we select 72 trainees to participate in a training and evaluation experiment. The evaluation model is validated by comparing it with expert evaluations. The results show that trainees can gain a better understanding of their roles and responsibilities and accurately remember the collaborative operation sequence. The training effect is positive, indicating that our system can effectively facilitate the teaching and training of LSAs.

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船舶救生设备教育虚拟培训系统研究
救生设备(LSAs)在海上紧急情况下起着至关重要的作用,海员需要接受严格的救生设备专业培训,以确保他们能够胜任海上工作。然而,主要依靠真实设备进行的传统教学和培训存在一些局限性。针对这些局限性,我们开发了一个可实现多人协同操作的虚拟培训系统。为保证系统的可扩展性和通用性,系统框架采用模块化设计。在网络功能部分,我们建立了一个网络架构,并应用了状态同步机制,以确保多用户之间的场景一致。此外,我们还为协作培训和评估提出了交互管理模式和评估模式。为了提高系统的灵活性,我们设计了两种协作训练模式。为了评估系统的有效性,我们挑选了 72 名学员参与培训和评估实验。通过与专家评估进行比较,验证了评估模式。结果表明,受训人员能够更好地理解自己的角色和职责,并准确地记住协同操作顺序。培训效果是积极的,表明我们的系统能有效地促进 LSA 的教学和培训。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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