Multistage Estimation of the Scale Parameter of Rayleigh Distribution with Simulation
This paper discusses the sequential estimation of the scale parameter of the Rayleigh distribution using the three-stage sequential sampling procedure proposed by Hall (<i>Ann. Stat.</i><b>1981</b>, <i>9</i>, 1229–1238). Both point and confidence interval estimati...
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doaj-dfb35ec3f81c489ab52df34825568f662020-11-25T04:12:00ZengMDPI AGSymmetry2073-89942020-11-01121925192510.3390/sym12111925Multistage Estimation of the Scale Parameter of Rayleigh Distribution with SimulationAli Yousef0Emad E.H. Hassan1Ayman A. Amin2Hosny I. Hamdy3Faculty of Engineering, Department of Mathematics, Kuwait College of Science and Technology,Doha District POBox 27235, KuwaitFaculty of Management Sciences, October University for Modern Sciences and Arts, 6th October City, 12566 Cairo, EgyptFaculty of Commerce, Menoufia University, Gamal Abd El-Nasir, Qism Shebeen El-Kom, Shibin el Kom, Menofia Governorate, Menoufia, EgyptFaculty of Management Sciences, October University for Modern Sciences and Arts, 6th October City, 12566 Cairo, EgyptThis paper discusses the sequential estimation of the scale parameter of the Rayleigh distribution using the three-stage sequential sampling procedure proposed by Hall (<i>Ann. Stat.</i><b>1981</b>, <i>9</i>, 1229–1238). Both point and confidence interval estimation are considered via a unified optimal decision framework, which enables one to make the maximum use of the available data and, at the same time, reduces the number of sampling operations by using bulk samples. The asymptotic characteristics of the proposed sampling procedure are fully discussed for both point and confidence interval estimation. Since the results are asymptotic, Monte Carlo simulation studies are conducted to provide the feel of small, moderate, and large sample size performance in typical situations using the Microsoft Developer Studio software. The procedure enjoys several interesting asymptotic characteristics illustrated by the asymptotic results and supported by simulation.https://www.mdpi.com/2073-8994/12/11/1925asymptotic regretcoverage probabilityloss functionthree-stage procedure |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ali Yousef Emad E.H. Hassan Ayman A. Amin Hosny I. Hamdy |
spellingShingle |
Ali Yousef Emad E.H. Hassan Ayman A. Amin Hosny I. Hamdy Multistage Estimation of the Scale Parameter of Rayleigh Distribution with Simulation Symmetry asymptotic regret coverage probability loss function three-stage procedure |
author_facet |
Ali Yousef Emad E.H. Hassan Ayman A. Amin Hosny I. Hamdy |
author_sort |
Ali Yousef |
title |
Multistage Estimation of the Scale Parameter of Rayleigh Distribution with Simulation |
title_short |
Multistage Estimation of the Scale Parameter of Rayleigh Distribution with Simulation |
title_full |
Multistage Estimation of the Scale Parameter of Rayleigh Distribution with Simulation |
title_fullStr |
Multistage Estimation of the Scale Parameter of Rayleigh Distribution with Simulation |
title_full_unstemmed |
Multistage Estimation of the Scale Parameter of Rayleigh Distribution with Simulation |
title_sort |
multistage estimation of the scale parameter of rayleigh distribution with simulation |
publisher |
MDPI AG |
series |
Symmetry |
issn |
2073-8994 |
publishDate |
2020-11-01 |
description |
This paper discusses the sequential estimation of the scale parameter of the Rayleigh distribution using the three-stage sequential sampling procedure proposed by Hall (<i>Ann. Stat.</i><b>1981</b>, <i>9</i>, 1229–1238). Both point and confidence interval estimation are considered via a unified optimal decision framework, which enables one to make the maximum use of the available data and, at the same time, reduces the number of sampling operations by using bulk samples. The asymptotic characteristics of the proposed sampling procedure are fully discussed for both point and confidence interval estimation. Since the results are asymptotic, Monte Carlo simulation studies are conducted to provide the feel of small, moderate, and large sample size performance in typical situations using the Microsoft Developer Studio software. The procedure enjoys several interesting asymptotic characteristics illustrated by the asymptotic results and supported by simulation. |
topic |
asymptotic regret coverage probability loss function three-stage procedure |
url |
https://www.mdpi.com/2073-8994/12/11/1925 |
work_keys_str_mv |
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