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    Area of Science:

    • Computer Science
    • Human-Computer Interaction
    • Virtual and Augmented Reality

    Background:

    • Immersive navigation in virtual reality (VR) and augmented reality (AR) relies on physical movement.
    • Occlusion and limited physical space pose challenges for accessing regions of interest.
    • Current methods like redirected walking can be unintuitive.

    Purpose of the Study:

    • To propose a novel approach for increasing navigation efficiency in VR and AR.
    • To address challenges of occlusion and limited physical space in immersive environments.
    • To improve user experience by reducing the need for extensive physical movement.

    Main Methods:

    • Implemented a multiperspective visualization technique.
    • Sampled occluded regions of interest from additional perspectives.
    • Integrated these perspectives seamlessly into the user's view.

    Main Results:

    • Demonstrated significant performance improvements in VR and AR environments.
    • User study confirmed enhanced efficiency in tasks like tracking, matching, searching, and ambushing.
    • The method allows users to explore more while moving less.

    Conclusions:

    • Multiperspective visualization is an effective method for enhancing navigation efficiency in VR and AR.
    • This approach overcomes limitations of physical locomotion and occluded regions.
    • It offers a more intuitive and efficient way to interact with virtual environments.