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首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >A collaborative simulation in shipbuilding and the offshore installation based on the integration of the dynamic analysis, virtual reality, and control devices
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A collaborative simulation in shipbuilding and the offshore installation based on the integration of the dynamic analysis, virtual reality, and control devices

机译:基于动态分析,虚拟现实和控制设备集成的造船和海上安装协作仿真

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摘要

It is difficult to observe the potential risks of lifting or turn-over operations in the early stages before a real operation. Therefore, many dynamic simulations have been designed to predict the risks and to reduce the possibility of accidents. These simulations, however, have usually been performed for predetermined and fixed scenarios, so they do not reflect the real-time control of an operator that is one of the most important influential factors in an operation; additionally, lifting or turn-over operations should be a collaboration involving more than two operators. Therefore, this study presents an integrated method for a collaborative simulation that allows multiple workers to operate together in the virtual world. The proposed method is composed of four components. The first component is a dynamic analysis that is based on multibody-system dynamics. The second component is VR (virtual reality) for the generation of realistic views for the operators. The third component comprises the control devices and the scenario generator to handle the crane in the virtual environment. Lastly, the fourth component is the HLA (high-level architecture)-based integrated simulation interface for the convenient and efficient exchange of the data through the middleware. To show the applicability of the proposed method, it has been applied to a block turn-over simulation for which one floating crane and two crawler cranes were used, and an offshore module installation for which a DCR (dual-crane rig) was used. In conclusion, the execution of the proposed method of this study is successful regarding the above two applications for which multiple workers were involved.
机译:在实际操作之前的早期阶段,很难观察到提升或翻身操作的潜在风险。因此,已经设计了许多动态模拟来预测风险并减少发生事故的可能性。但是,这些模拟通常是在预定和固定的情况下执行的,因此它们不能反映作为操作中最重要的影响因素之一的操作员的实时控制。此外,起吊或翻身操作应是涉及两个以上操作员的协作。因此,本研究提出了一种用于协同仿真的集成方法,该方法允许多个工人在虚拟世界中一起操作。所提出的方法由四个部分组成。第一部分是基于多体系统动力学的动力学分析。第二个组件是VR(虚拟现实),用于为操作员生成逼真的视图。第三部分包括控制设备和脚本生成器,以在虚拟环境中处理起重机。最后,第四个组件是基于HLA(高级体系结构)的集成仿真接口,用于通过中间件方便高效地交换数据。为了显示所提出方法的适用性,已将其应用于使用一台浮动起重机和两台履带式起重机以及使用DCR(双起重机装置)的海上模块安装的区块翻转模拟中。总之,对于涉及多个工人的上述两个应用,本研究的建议方法的执行是成功的。

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