利用球员动作方向提升冰球定位准确率
Ice Hockey Puck Localization Using Contextual Cues
- 融合球员朝向与位置作为先验信息增强定位
- 在PuckDataset上平均精度提升12.2%,误差降低25%
- 适合需要精准追踪的体育视频分析场景
冰球比赛中,冰球尺寸小、常被遮挡、存在运动模糊和转播伪影,且因摄像机变焦和视角差异导致尺度不一致,给冰球检测带来挑战。现有方法多依赖外观或运动特征,未显式建模球员行为带来的上下文线索。球员通常会转向并注视冰球,这一强上下文线索被用于设计新型单帧冰球定位方法PLUCC。该方法包含三部分:(a) 上下文编码器,利用球员朝向与位置作为先验;(b) 特征金字塔编码器,从双编码器提取多尺度特征;(c) 门控解码器,结合潜在特征与通道门控机制。为评估,提出无透视偏差的量度指标Rink Space Localization Error(RSLE)。在PuckDataset上的实验表明,PLUCC达到领先性能,平均精度较基线提升12.2%,RSLE平均精度提高25%。研究证实上下文理解对提升冰球检测的关键作用,对自动化体育分析具有广泛意义。
原文摘要 · Abstract (English)
Puck detection in ice hockey broadcast videos poses significant challenges due to the puck's small size, frequent occlusions, motion blur, broadcast artifacts, and scale inconsistencies due to varying camera zoom and broadcast camera viewpoints. Prior works focus on appearance-based or motion-based cues of the puck without explicitly modelling the cues derived from player behaviour. Players consistently turn their bodies and direct their gaze toward the puck. Motivated by this strong contextual cue, we propose Puck Localization Using Contextual Cues (PLUCC), a novel approach for scale-aware and context-driven single-frame puck detections. PLUCC consists of three components: (a) a contextual encoder, which utilizes player orientations and positioning as helpful priors; (b) a feature pyramid encoder, which extracts multiscale features from the dual encoders; and (c) a gating decoder that combines latent features with a channel gating mechanism. For evaluation, in addition to standard average precision, we propose Rink Space Localization Error (RSLE), a scale-invariant homography-based metric for removing perspective bias from rink space evaluation. The experimental results of PLUCC on the PuckDataset dataset demonstrated state-of-the-art detection performance, surpassing previous baseline methods by an average precision improvement of 12.2% and RSLE average precision of 25%. Our research demonstrates the critical role of contextual understanding in improving puck detection performance, with broad implications for automated sports analysis.
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