A Fast, Easy, and Efficient Estimator for Multiparty Electoral Data
Author(s) -
James Honaker,
Jonathan N. Katz,
Gary King
Publication year - 2002
Publication title -
political analysis
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.953
H-Index - 69
eISSN - 1476-4989
pISSN - 1047-1987
DOI - 10.1093/pan/10.1.84
Subject(s) - computer science , estimator , variety (cybernetics) , aggregate (composite) , politics , distribution (mathematics) , econometrics , theoretical computer science , political science , statistics , artificial intelligence , mathematics , law , mathematical analysis , materials science , composite material
Katz and King have previously developed a model for predicting or explaining aggregate electoral results in multiparty democracies. Their model is, in principle, analogous to what least-squares regression provides American political researchers in that two-party system. Katz and King applied their model to three-party elections in England and revealed a variety of new features of incumbency advantage and sources of party support. Although the mathematics of their statistical model covers any number of political parties, it is computationally demanding, and hence slow and numerically imprecise, with more than three parties. In this paper we produce an approximate method that works in practice with many parties without making too many theoretical compromises. Our approach is to treat the problem as one of missing data. This allows us to use a modification of the fast EMis algorithm of King, Honaker, Joseph, and Scheve and to provide easy-to-use software, while retaining the attractive features of the Katz and King model, such as the t distribution and explicit models for uncontested seats.
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