用自编码器从穿戴设备数据中提炼跑步表现评分
Autoencoder Architectures for Athlete Performance Scoring from Wearable Telemetry

- 用五种降维模型将九类传感器数据压缩为单一表现分数
- 深度自编码器在重建误差和评分可解释性上综合最优
- 心率、配速和有氧解耦是核心影响因素,符合生理规律
可穿戴设备为日常跑者生成大量高维训练日志,当前瓶颈已从数据采集转向解读。本文评估了五种降维模型:三种自编码器变体、PCA与变分自编码器,将其将九类传感器跑者特征压缩为单一标量表现指标——隐空间得分。由于场景为完全无监督,模型质量通过两个互补维度评估:重建误差(均方误差)与隐空间得分可解释性,后者通过斯皮尔曼秩相关、肯德尔秩相关、互信息及置换重要性度量。这些指标合并为综合选择标准,避免仅依赖重建精度选型。四种度量的特征排序通过改进的博达计数聚合,并经自助法验证稳定性。引入双特征线性基线锚定对比。深度自编码器实现最低重建误差与最高综合得分。当PCA隐藏层加宽后,深层变体在综合标准上与深度自编码器接近,表明限制因素是隐藏层容量而非一维瓶颈。所有模型与重采样结果中,配速、有氧解耦与平均心率均为主导得分驱动因素,符合既定生理学认知。
原文摘要 · Abstract (English)
Wearable devices produce large, high dimensional training logs for everyday runners, and interpretation rather than data collection is now the limiting step. This paper evaluates five dimensionality reduction models, three autoencoder variants, PCA, and a Variational Autoencoder, on their ability to compress nine sensor runner profiles into a single scalar performance indicator, the latent score. Because the setting is fully unsupervised, model quality is assessed along two complementary axes: reconstruction error (Mean Squared Error) and latent score interpretability, measured via Spearman and Kendall rank correlations, Mutual Information, and Permutation Importance. These are combined into a composite selection criterion that prevents selecting models on reconstruction accuracy alone. Feature rankings from the four metrics are aggregated via a modified Borda count, and their stability is confirmed by bootstrap validation. A two feature linear baseline is included to anchor the comparison. Deep autoencoder achieved the lowest reconstruction error and the highest composite score. Once the PCA hidden layers were widened, the deeper variants became closely competitive with Deep AE on the composite criterion, indicating that the limiting factor was hidden layer capacity rather than the one dimensional bottleneck. Running pace, aerobic decoupling, and average heart rate emerged as the dominant latent score drivers across all models and resampling runs, consistent with established physiology.
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