Limit theorems for deviation means of independent and identically distributed random variables
Mátyás Barczy, Zsolt Páles
Abstract
Open-access reader
Mátyás Barczy, Zsolt Páles
Abstract
Open-access reader
We derive a strong law of large numbers, a central limit theorem, a law of the iterated logarithm and a large deviation theorem for so-called deviation means of independent and identically distributed random variables (for the strong law of large numbers, we suppose only pairwise independence instead of (total) independence). The class of deviation means is a special class of M-estimators or more generally extremum estimators, which are well-studied in statistics. The assumptions of our limit theorems for deviation means seem to be new and weaker than the known ones for M-estimators in the literature. Especially, our results on the strong law of large numbers and on the central limit theorem generalize the corresponding ones for quasi-arithmetic means due to de Carvalho (2016) and the ones for Bajraktarević means due to Barczy and Burai (2022).
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We derive a strong law of large numbers, a central limit theorem, a law of the iterated logarithm and a large deviation theorem for so-called deviation means of independent and identically distributed random variables (for the strong law of large numbers, we suppose only pairwise independence instead of (total) independence). The class of deviation means is a special class of M-estimators or more generally extremum estimators, which are well-studied in statistics. The assumptions of our limit theorems for deviation means seem to be new and weaker than the known ones for M-estimators in the literature. Especially, our results on the strong law of large numbers and on the central limit theorem generalize the corresponding ones for quasi-arithmetic means due to de Carvalho (2016) and the ones for Bajraktarević means due to Barczy and Burai (2022).
Key concepts: Central limit theorem, Independent and identically distributed random variables, Mathematics, Law of large numbers, Independence (probability theory), Estimator, Random variable, Limit (mathematics)