Enhancing Immersive Virtual Reality Product Experiences: Strategies for Graphics Quality, Performance Optimization, and User-Centric Interfaces
Ishrath Fatima, Kavitha Sooda · 2023
In recent years, Virtual reality (VR) technology has revolutionized product presentation, offering immersive experiences for engaging audiences. This paper explores VR's potential by creating virtual environments showcasing product features. This approach fosters impactful connections with customers, investors, and stakeholders. We highlight the limitations of traditional displays and emphasize VR's advantages, enabling interactive engagements to transcend physical barriers. The paper outlines techniques using C#, Blender, and Unity 3D to create a realistic VR experience. Performance optimization encompasses latency, user interaction, spatial audio, 3D models, visuals, and collaboration. Lighting, baking, occlusion, 3D modeling, and static object optimizations yield substantial performance gains. Lighting improvements result in an 80% boost in rendering efficiency, occlusion techniques reduce GPU load by 30%, and 3D model streamlining reduces memory use by 20%. Procedural modeling reduces memory consumption by 15%, creating intricate models while adhering to performance benchmarks. This paper offers a comprehensive approach for crafting immersive VR product encounters, yielding a 28% overall improvement in performance. Procedural modeling enhances resource efficiency while maintaining visual quality, highlighting VR's potential to redefine product representation and stakeholder engagement.