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HGIC: A Hand Gesture Based Interactive Control System for Efficient and Scalable Multi-UAV Operations

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arxiv 2403.05478 v1 pith:ZAWWGBXR submitted 2024-03-08 cs.RO

HGIC: A Hand Gesture Based Interactive Control System for Efficient and Scalable Multi-UAV Operations

classification cs.RO
keywords hgiccontrolmuavcognitivecommandshandadjustmentscomplex
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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As technological advancements continue to expand the capabilities of multi unmanned-aerial-vehicle systems (mUAV), human operators face challenges in scalability and efficiency due to the complex cognitive load and operations associated with motion adjustments and team coordination. Such cognitive demands limit the feasible size of mUAV teams and necessitate extensive operator training, impeding broader adoption. This paper developed a Hand Gesture Based Interactive Control (HGIC), a novel interface system that utilize computer vision techniques to intuitively translate hand gestures into modular commands for robot teaming. Through learning control models, these commands enable efficient and scalable mUAV motion control and adjustments. HGIC eliminates the need for specialized hardware and offers two key benefits: 1) Minimal training requirements through natural gestures; and 2) Enhanced scalability and efficiency via adaptable commands. By reducing the cognitive burden on operators, HGIC opens the door for more effective large-scale mUAV applications in complex, dynamic, and uncertain scenarios. HGIC will be open-sourced after the paper being published online for the research community, aiming to drive forward innovations in human-mUAV interactions.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. A Model for Mediating Multi-Modal Human Intent into Safe Maneuvers for UAVs

    cs.RO 2026-07 conditional novelty 5.0

    Operator multi-modal inputs are mediated as constrained motion primitives via a request-evaluate-execute pipeline with preconditions, invariants, and runtime monitors.