A truncated mean-parameterized Conway-Maxwell-Poisson model for the analysis of Test match bowlers

IF 1.2 4区 数学 Q2 STATISTICS & PROBABILITY
Peter M. Philipson
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引用次数: 0

Abstract

A truncated, mean-parameterized Conway-Maxwell-Poisson model is developed to handle under- and overdispersed count data owing to individual heterogeneity. The truncated nature of the data allows for a more direct implementation of the model than is utilized in previous work without too much computational burden. The model is applied to a large dataset of Test match cricket bowlers, where the data are in the form of small counts and range in time from 1877 to the modern day, leading to the inclusion of temporal effects to account for fundamental changes to the sport and society. Rankings of sportsmen and women based on a statistical model are often handicapped by the popularity of inappropriate traditional metrics, which are found to be flawed measures in this instance. Inferences are made using a Bayesian approach by deploying a Markov Chain Monte Carlo algorithm to obtain parameter estimates and to extract the innate ability of individual players. The model offers a good fit and indicates that there is merit in a more sophisticated measure for ranking and assessing Test match bowlers.
一个截尾均值参数化康威-麦克斯韦-泊松模型分析的板球比赛
建立了截断的均值参数化康威-麦克斯韦-泊松模型来处理由于个体异质性造成的过分散和过分散的计数数据。数据的截断特性允许比以前的工作中使用的模型更直接的实现,而不需要太多的计算负担。该模型应用于板球板球测试赛的大型数据集,其中数据以小计数的形式出现,时间范围从1877年到现在,导致包括时间效应,以解释运动和社会的根本变化。基于统计模型的男女运动员排名往往受到不适当的传统衡量标准的流行的阻碍,在这种情况下,这些衡量标准被发现是有缺陷的。通过部署马尔可夫链蒙特卡罗算法,使用贝叶斯方法进行推断,以获得参数估计并提取个体玩家的先天能力。该模型提供了很好的拟合,并表明采用更复杂的方法来排名和评估板球测试赛的投球手是有价值的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Statistical Modelling
Statistical Modelling 数学-统计学与概率论
CiteScore
2.20
自引率
0.00%
发文量
16
审稿时长
>12 weeks
期刊介绍: The primary aim of the journal is to publish original and high-quality articles that recognize statistical modelling as the general framework for the application of statistical ideas. Submissions must reflect important developments, extensions, and applications in statistical modelling. The journal also encourages submissions that describe scientifically interesting, complex or novel statistical modelling aspects from a wide diversity of disciplines, and submissions that embrace the diversity of applied statistical modelling.
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