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4 December 2019 Application of VR Technology in the Optimization Modeling of Port Wave-proof Building
Hao Sun, Yan Li, Joonki Paik
Author Affiliations +
Abstract

Sun, H.; Li, Y., and Paik, J., 2019. Application of VR technology in the optimization modeling of port wave-proof building. In: Hoang, A.T. and Aqeel Ashraf, M. (eds.), Research, Monitoring, and Engineering of Coastal, Port, and Marine Systems. Journal of Coastal Research, Special Issue No. 97, pp. 267–272.

The design method of port anti-wave building optimization model based on VR technology is proposed, which can be divided into three-dimensional port anti-wave building body-sensing interaction information reconstruction and digital interaction information processing. The system mainly comprises a port anti-wave building information acquisition module, a port wave-proof building geographic information base model and a 3D image analysis module, The VR virtual reality reconstruction module, the VR program loading module, the human-computer interaction module and the like are constructed by adopting the 3-dimensional solid model of the port anti-wave building optimization model by using the 3DStudio MAX software, According to the self-adaptive virtual simulation design method, the intelligent design and three-dimensional simulation of the port anti-wave building body-sensing interaction are carried out, and the software development design of the port anti-wave building optimization model of the VR virtual simulation is realized under the embedded ARM environment. The simulation results show that the designed system has good port anti-wave building body-sensing interaction capability, and has good application value in the design of the harbor wave-proof building.

©Coastal Education and Research Foundation, Inc. 2019
Hao Sun, Yan Li, and Joonki Paik "Application of VR Technology in the Optimization Modeling of Port Wave-proof Building," Journal of Coastal Research 97(sp1), 267-272, (4 December 2019). https://doi.org/10.2112/SI97-039.1
Received: 25 April 2019; Accepted: 16 July 2019; Published: 4 December 2019
KEYWORDS
optimization modeling
port
VR technology
wave-proof building
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