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An Evaluation of Decentralized Group Formation Techniques for Flying Light Specks

Multimedia 2026-06-25 v1

Abstract

Group formation is fundamental for 3D displays that use Flying Light Specks, FLSs, to illuminate shapes and provide haptic interactions. An FLS is a drone with light sources that illuminates a shape. Groups of G FLSs may implement reliability techniques to tolerate FLS failures, provide kinesthetic haptic feedback in response to a user's touch, and facilitate a divide and conquer approach to challenges such as localizing FLSs to render a shape. This paper evaluates four decentralized techniques to form groups. An FLS implements a technique autonomously using asynchronous communication and without a global clock. We evaluate these techniques using synthetic point clouds with known optimal solutions and real point clouds. Obtained results show a technique named Random Subset (RS) is superior when constructing small groups (G \leq 5) while a different technique named Closest Available Neighbor First (CANF) is superior when constructing large groups (G \geq 10).

Keywords

Cite

@article{arxiv.2606.26645,
  title  = {An Evaluation of Decentralized Group Formation Techniques for Flying Light Specks},
  author = {Hamed Alimohammadzadeh and Heather Culbertson and Shahram Ghandeharizadeh},
  journal= {arXiv preprint arXiv:2606.26645},
  year   = {2026}
}

Comments

Appeared in ACM Multimedia Asia 2023 (MMAsia '23), December 06-08, 2023, Tainan, Taiwan. ACM, New York, NY, USA, 7 pages