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From R-squared to coefficient of model accuracy for assessing "goodness-of-fits"

From R-squared to coefficient of model accuracy for assessing "goodness-of-fits"

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dc.contributor.author Charles Onyutha
dc.date.accessioned 2021-01-10T11:55:40Z
dc.date.available 2021-01-10T11:55:40Z
dc.date.issued 2020
dc.identifier.uri https://combine.alvar.ug/handle/1/49081
dc.description.abstract Abstract. Modelers tend to focus more on advancing methods of statistical and mathematical modeling than developing novel techniques for comparing modeled results with observations or establishing metrics for model performance assessment. Perhaps solely the most extensively applied "goodness-of-fit" measure especially for assessing performance of regression models is the coefficient of determination R2. Normally, high R2 tends to be associated with an efficient model. Nevertheless, R2 has been cited to have no importance in the classical model of regression. Even in its use in descriptive statistics, R2 is known to have questionable justification. R2 is inadequate in assessing model performance because it does not give any information on the model residuals. Furthermore, R-squared can be low for an effective model. Contrastingly, a very poor model fit can yield high R2. Regressing X on Y yields R2 which is the same as that if Y is regressed on X thereby invalidating its use as a coefficient of determination. Taking into account the drawbacks of using R2, this paper introduces coefficient of model accuracy (CMA) the derivation of which comprises an analogy to the R2. However, instead of simply squaring an ordinary Pearson's product-moment correlation coefficient to obtain R2, CMA comprises the product of nonparametric sample correlation and model bias. Acceptability of the introduced method can be found demonstrated through comparison of results from simulations by hydrological models calibrated using CMA and other existing objective functions.
dc.publisher Copernicus GmbH
dc.title From R-squared to coefficient of model accuracy for assessing "goodness-of-fits"
dc.type journal article
dc.identifier.doi 10.5194/gmd-2020-51
dc.identifier.mag 3020974658
dc.identifier.lens 035-136-230-114-947
dc.identifier.spage 1
dc.identifier.epage 25
dc.subject.lens-fields Nonparametric statistics
dc.subject.lens-fields Statistics
dc.subject.lens-fields Correlation
dc.subject.lens-fields Coefficient of determination
dc.subject.lens-fields Regression analysis
dc.subject.lens-fields Correlation coefficient
dc.subject.lens-fields Model bias
dc.subject.lens-fields Mathematics
dc.subject.lens-fields Descriptive statistics
dc.subject.lens-fields Regression


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