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Related Experiment Video

Updated: Oct 12, 2025

Photorealistic Learned Landscapes for Augmented Reality
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Optimization of building model based on 5G virtual reality technology in computer vision software.

Ziyou Zhuang1

  • 1Department of Digital media technology, Dalian Neusoft University of Information, Dalian 116023, Liaoning, China.

Mathematical Biosciences and Engineering : MBE
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This study optimizes architectural models for 5G virtual reality systems by integrating computer vision and virtual modeling. The findings demonstrate accurate spatial calculations, enhancing real-time interaction in virtual environments.

Keywords:
5G networkbuilding modelvirtual reality technologyvisual software

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Area of Science:

  • Computer Science
  • Engineering
  • Architecture

Background:

  • Virtual reality (VR) systems face challenges with complex scene models hindering real-time user interaction.
  • Optimizing architectural models is crucial for efficient VR performance.

Purpose of the Study:

  • To investigate the optimization of computer vision software modeling within 5G virtual reality (VR) technology.
  • To summarize methods for architectural scene model optimization in VR design.

Main Methods:

  • Utilizing image grayscale transformation, computer vision detection, and virtual modeling techniques.
  • Applying unit quaternion method and quaternion-based spatial rear intersection for coordinate calculations.
  • Conducting experiments on model optimization and environmental impact of building materials.

Main Results:

  • The quaternion-based spatial rear intersection method yielded calculated outer orientation element values closely matching actual values.
  • Pixel coordinate calculations (X, Y, Z) showed minimal deviation from actual positions (e.g., X: 1.27 vs. 1.25).
  • Hollow bricks were identified as building materials with significant environmental impact.

Conclusions:

  • The proposed methods accurately optimize architectural models for 5G VR, improving real-time interaction.
  • Quaternion-based calculations provide reliable spatial positioning for virtual environments.
  • Further research into sustainable building materials is warranted.