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April 10, 2026IEEE Transactions on Visualization and Computer Graphics0 citations

SATOR: Seamless 3D Teleportation to both Ground and Mid-Air Targets

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DRDaniel RuppMWMatthias WölwerTKTorsten Kuhlen

Key Points

  • The study aims to develop an efficient 3D teleportation technique allowing seamless navigation between ground and mid-air targets.
  • Developed SATOR technique combining previous teleportation methods.
  • Implemented four parametrizations of SATOR for testing.
  • Conducted a user study with 30 participants comparing SATOR to a baseline technique.
  • SATOR was found to be more efficient than the baseline technique.
  • Participants reported increased accuracy with SATOR.
  • SATOR was rated easier to use compared to traditional methods.

Abstract

Traditional target-selection-based teleportation depends on the intersection of a (curved) ray with the scene's geometry, which limits navigation to points on the ground, restricting users' navigational freedom. While previous techniques exist that permit mid-air target selection, they are not optimal for transitioning between air and ground navigation, leading to inaccurate or lengthy interaction sequences. In this paper, we introduce SATOR, a new 3D teleportation technique designed to enable efficient and accurate navigation to both ground and mid-air targets by combining and enhancing previous approaches. Informed by the literature, we implemented four different parametrizations of our technique and compared them to a previously published technique that also enables both ground and mid-air target selection. Our user study with 30 participants indicates that SATOR is more efficient, accurate, and easier to use than the baseline. As a result, SATOR effectively helps users get an overview of the environment, observe features at different heights, or maneuver quickly around larger obstacles.

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Cite This Study

Rupp et al. (2026) studied this question.

synapsesocial.com/papers/69d895046c1944d70ce05fachttps://doi.org/10.1109/tvcg.2026.3679894
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