Research on Real-Time Intelligent Rendering Method for Immersive Interactive Virtual Reality Scenes
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Keywords

Immersive interaction
Real-time intelligent rendering
Fixation point prediction
Adaptive level of detail

DOI

10.26689/jera.v10i6.15647

Submitted : 2026-06-23
Accepted : 2026-07-08
Published : 2026-07-23

Abstract

Virtual reality scenes oriented towards immersive interaction have strict requirements for real-time rendering, such as high frame rate, low latency, and visual consistency. Traditional rendering methods are difficult to ensure both real-time performance and immersive experience under limited computing resources. This article systematically explores the key technologies and implementation paths of intelligent rendering methods: firstly, it analyzes the rendering pressure bottleneck, multi view continuity, and visual dual constraints caused by immersive interaction; Furthermore, an intelligent rendering mechanism based on gaze point prediction, scene semantic modeling, and closed-loop resource allocation will be constructed; On this basis, adaptive strategies such as behavior driven detail level adjustment, dynamic and static differentiation processing, spatiotemporal consistency, and load coordination are proposed; Finally, the evaluation indicators, stability analysis, and scalability verification of real-time performance and immersion are discussed. This article provides a system framework for the theoretical construction and engineering implementation of intelligent rendering methods.

References

Liu Y, Yang S, Yang Y, et al., 2026, Research Progress on Gaze-Based Rendering Techniques for Visual Comfort Optimization in Virtual Reality (Invited). Acta Optica Sinica, 46(9): 85–103.

Wu R, 2026, Application and Challenges of Digital Media Technology in Constructing Virtual Reality Scene Systems. Software, 47(3): 123–125.

Wang X, 2026, Real-Time Rendering Optimization Algorithms for Virtual Reality Scenes Based on Deep Learning. Journal of Xinyang Agriculture and Forestry University, 36(1): 89–96.

Jiang D, Yan X, 2025, Research on Real-Time Image Rendering Algorithms in Virtual Reality Environments. Information and Computers, 37(22): 10–12.

Zhang F, 2025, Application of Virtual Reality Technology in Film and Television Production. Television Technology, 49(10): 157–159.

Wang Z, 2025, GPU-Accelerated Methods for Real-Time Rendering Optimization in Virtual Reality Scenes. China New Technology & New Products, 2025(8): 34–36.

Wang M, 2025, Analysis of the Integration of Virtual Reality and Electronic Information Processing Technology. Electronics Technology, 54(2): 306–307.

Wang S, Ren D, 2024, Maze, Miniature Worlds, and Experimental Fields: Investigating Landscape Experiences in Real-Time Interactive Films. Contemporary Cinema, 2024(11): 111–118.

Liang Z, Hao X, 2024, Virtual Simulation Modeling and Rendering Technology Based on Virtual Reality. Science & Technology Innovation and Application, 14(14): 37–40.

Zhang R, 2024, Integration and Challenges of Virtual Reality and 3D Rendering Technology in Game Design. Toy World, 2024(4): 118–120.

Gao Q, 2023, Virtual Space Interaction Systems Based on Unity3D. Information Recording Materials, 24(9): 176–178.

Zeng X, Huang Z, Dong J, 2023, Improvement and Implementation of Scene Rendering Methods in Virtual Reality Power Training Systems. Electric Technology, 2023(1): 68–71.