Modeling COVID-19 Real Data Set by a New Extension of Haq Distribution. Tashkandy, Y., Bakr, M., E., Gemeay, A., M., Hussam, E., Abd El-Raouf, M., M., & Hossain, M., M. Axioms, 12(4):327, 2023.
doi  abstract   bibtex   
Modeling real-life pandemics is very important; this study focuses on introducing a new superior flexible extension of the asymmetric Haq distribution known as the power Haq distribution (PHD). The most fundamental mathematical properties are derived. We determine its parameters using ten estimation methods. The asymptotic behavior of its estimators is investigated through simulation, and a comparison is done to find out the most efficient method for estimating the parameters of the distribution under consideration. We use a sample for the COVID-19 data set to evaluate the proposed model’s performance and usefulness in fitting the data set in comparison to other well-known models.
@article{
 title = {Modeling COVID-19 Real Data Set by a New Extension of Haq Distribution},
 type = {article},
 year = {2023},
 keywords = {COVID-19,Haq distribution,estimation,modeling,simulation},
 pages = {327},
 volume = {12},
 id = {39be0bbb-96bf-386f-bedd-b8d98bee523b},
 created = {2023-03-28T22:11:19.472Z},
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 profile_id = {3d6b17c2-7de8-3a82-bf4f-ddb0e3081e5f},
 last_modified = {2023-03-28T22:11:19.472Z},
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 starred = {false},
 authored = {true},
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 source_type = {EJOUR},
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 abstract = {Modeling real-life pandemics is very important; this study focuses on introducing a new superior flexible extension of the asymmetric Haq distribution known as the power Haq distribution (PHD). The most fundamental mathematical properties are derived. We determine its parameters using ten estimation methods. The asymptotic behavior of its estimators is investigated through simulation, and a comparison is done to find out the most efficient method for estimating the parameters of the distribution under consideration. We use a sample for the COVID-19 data set to evaluate the proposed model’s performance and usefulness in fitting the data set in comparison to other well-known models.},
 bibtype = {article},
 author = {Tashkandy, Yusra and Bakr, Mahmoud E and Gemeay, Ahmed M and Hussam, Eslam and Abd El-Raouf, Mahmoud M and Hossain, Md M},
 doi = {10.3390/axioms12040327},
 journal = {Axioms},
 number = {4}
}

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