通过反事实分析优化投球序列,提升赛季表现
Counterfactual Optimization of Baseball Pitch Sequences and Estimation of Its Impact on Season-Level Statistics
- 用Transformer模型预测投球结果,生成替代投球序列
- 优化前后投球可使每9局三振数提升1.0以上
- 适合球队教练与数据分析团队参考投球策略
尽管投球序列是棒球分析的核心议题,但以往研究多聚焦于单次击球中最后一球的优化,对前置准备球及其对整个赛季表现的影响关注不足。本研究利用MLB Statcast数据开展反事实分析。基于Transformer的机器学习模型被训练以预测目标投球是否导致击球或挥空。通过替换最终投球或前置准备球的类型与位置,同时保持上下文信息不变,生成反事实投球序列。最优反事实选择定义为使预测击球概率最小化的方案,并通过回归模型将模型输出与赛季统计数据关联,估算其预期影响。结果显示,优化最终投球与准备投球均能显著影响赛季表现,包括使每9局三振数(K/9)提升超过1.0。分析还揭示了不同速度区间有效投球位置、投球控制的重要性,以及中速球扩展投球选择的潜力。这些发现从量化角度支持了投球序列在棒球战略中的关键作用。
原文摘要 · Abstract (English)
Although pitch sequencing is a central topic in baseball analytics, previous studies have primarily focused on optimizing the final pitch within a single plate appearance, leaving the role of preceding setup pitches and their impact on long-term season-level performance insufficiently examined. To address these issues, this study conducted counterfactual analyses using MLB Statcast data. A Transformer-based machine-learning model was trained to predict whether a target pitch would result in an in-play outcome or swing-out. Counterfactual pitch sequences were then generated by replacing either the final pitch or the preceding setup pitch with alternative pitch types and locations while keeping the surrounding contextual information fixed. Optimal counterfactual selections were defined as those that minimized the predicted in-play probability, and their expected effects on pitchers' seasonal statistics were estimated using regression models linking model outputs to season statistics. The results suggest that the optimization of both final and setup pitches may substantially influence season-level performance, including improvements of more than 1.0 in K/9. The analyses also provided several practical insights, including velocity-band-specific effective locations, the importance of pitch commands, and the expansion of pitch-selection options through middle-velocity pitches. These findings quantitatively support the strategic importance of pitch sequencing in baseball.
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