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MonoTrack: Shuttle trajectory reconstruction from monocular badminton video

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arxiv 2204.01899 v2 pith:YJ5X4TMY submitted 2022-04-04 cs.CV cs.LGcs.MM

classification cs.CVcs.LGcs.MM
keywords trajectorybadmintonshuttlesystemcourtestimationinformationmonocular
verification ladder T0 review T1 audit T2 compute T3 formal
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Trajectory estimation is a fundamental component of racket sport analytics, as the trajectory contains information not only about the winning and losing of each point, but also how it was won or lost. In sports such as badminton, players benefit from knowing the full 3D trajectory, as the height of shuttlecock or ball provides valuable tactical information. Unfortunately, 3D reconstruction is a notoriously hard problem, and standard trajectory estimators can only track 2D pixel coordinates. In this work, we present the first complete end-to-end system for the extraction and segmentation of 3D shuttle trajectories from monocular badminton videos. Our system integrates badminton domain knowledge such as court dimension, shot placement, physical laws of motion, along with vision-based features such as player poses and shuttle tracking. We find that significant engineering efforts and model improvements are needed to make the overall system robust, and as a by-product of our work, improve state-of-the-art results on court recognition, 2D trajectory estimation, and hit recognition.

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Cited by 2 Pith papers

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

  1. TactiPlay: Multi-Granularity Tactical Parsing and Video-Anchored Match Review for Amateur Badminton Players

    cs.HC 2026-07 conditional novelty 5.5 of 10

    A taxonomy-guided, rally-level, video-anchored review system elicits more frequent, concrete, actionable, and appropriate tactical reflections from amateur badminton players than a report-and-statistics baseline.

  2. A Real-Time, Vision-Based System for Badminton Smash Speed Estimation on Mobile Devices

    cs.CV 2025-09 reject novelty 3.0 of 10

    A phone-based YOLOv5+Kalman pipeline estimates badminton smash speed at impact, reporting much higher values than a radar gun, but the validation and released artifacts are insufficient.

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