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Estimating Weibull Parameters Using Maximum Likelihood Estimation and Ordinary Least Squares: Simulation Study and Application on Meteorological Data

Nawal Adlina Mohd Ikbal, Syafrina Abdul Halim, Norhaslinda Ali

2022Mathematics and Statistics24 citationsDOIOpen Access PDF

Abstract

Inefficient estimation of distribution parameters for current climate will lead to misleading results in future climate. Maximum likelihood estimation (MLE) is widely used to estimate the parameters. However, MLE is not well performed for the small size. Hence, the objective of this study is to compare the efficiency of MLE with ordinary least squares (OLS) through the simulation study and real data application on wind speed data based on model selection criteria, Akaike information criterion (AIC) and Bayesian information criterion (BIC) values. The Anderson-Darling (AD) test is also performed to validate the proposed distribution. In summary, OLS is better than MLE when dealing with small sample sizes of data and estimating the shape parameter, while MLE is capable of estimating the value of scale parameter. However, both methods are well performed at a large sample size.

Topics & Concepts

MathematicsWeibull distributionOrdinary least squaresStatisticsMaximum likelihoodEstimationGeneralized least squaresNon-linear least squaresLeast-squares function approximationApplied mathematicsEconometricsEstimation theoryEconomicsManagementEstimatorWind and Air Flow StudiesVehicle emissions and performanceEnvironmental Impact and Sustainability
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