Evaluating plate discipline in Major League Baseball with Bayesian Additive Regression Trees

Author:

Yee Ryan1,Deshpande Sameer K.1ORCID

Affiliation:

1. Department of Statistics , University of Wisconsin–Madison , Madison , USA

Abstract

Abstract We introduce a three-step framework to determine at which pitches Major League batters should swing. Unlike traditional plate discipline metrics, which implicitly assume that all batters should always swing at (resp. take) pitches inside (resp. outside) the strike zone, our approach explicitly accounts not only for the players and umpires involved in the pitch but also in-game contextual information like the number of outs, the count, baserunners, and score. We first fit flexible Bayesian nonparametric models to estimate (i) the probability that the pitch is called a strike if the batter takes the pitch; (ii) the probability that the batter makes contact if he swings; and (iii) the number of runs the batting team is expected to score following each pitch outcome (e.g. swing and miss, take a called strike, etc.). We then combine these intermediate estimates to determine whether swinging increases the batting team’s run expectancy. Our approach enables natural uncertainty propagation so that we can not only determine the optimal swing/take decision but also quantify our confidence in that decision. We illustrate our framework using a case study of pitches faced by Mike Trout in 2019.

Publisher

Walter de Gruyter GmbH

Subject

Decision Sciences (miscellaneous),Social Sciences (miscellaneous)

Reference25 articles.

1. Arthur, R. 2014a. Moonshot: The New Best Way to Measure Plate Discipline. Also available at: https://www.baseballprospectus.com/news/article/25008/moonshot-the-new-best-way-to-measure-plate-discipline/.

2. Arthur, R. 2014b. Moonshot: The Victims of a Bad Strike Zone. Also available at: https://www.baseballprospectus.com/news/article/24862/moonshot-the-victims-of-a-bad-strike-zone/.

3. Brill, R. S., S. K. Deshpande, and A. J. Wyner. 2022. “A Bayesian Analysis of the Time through the Order Penalty in Baseball.” arXiv preprint arXiv:2210.06724.

4. Center for High Throughput Computing. 2006. Center for High Throughput Computing.

5. Chang, W., J. Cheng, J. Allaire, C. Sievert, B. Schloerke, Y. Xie, J. Allen, J. McPherson, A. Dipert, and B. Borges. 2022. Shiny: Web Application Framework for R.

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