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    Designing efficient dispersion control charts under various ranked-set sampling approaches

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    1-s2.0-S0377042723006234-main.pdf (3.193Mb)
    Date
    2024
    Author
    Zahid, Rasheed
    Zhang, Hongying
    Anwar, Syed Masroor
    Noor-ul-Amin, Muhammad
    Adegoke, Nurudeen A.
    Abbasi, Saddam Akber
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    Abstract
    This study presents an in-depth evaluation of fourteen distinct ranked-set sampling methodologies employed to enhance the efficacy of Shewhart-type dispersion charts in identifying persistent shifts in underlying industrial processes. Despite the widespread use of Shewhart-type control charts under simple random sampling for monitoring process dispersion parameters, the efficiency of these dispersion charts under ranked-set sampling procedures has been largely overlooked. Through comprehensive simulation exercises, we obtained the run-length characteristics of the proposed charts, thereby laying a foundation for the comparative analysis of different sampling strategies. Our findings emphasize the superior performance of modified neoteric ranked-set sampling, which consistently outperformed the other techniques in all tested scenarios. Furthermore, we included an example to reinforce the significance and utility of the proposed methodologies in real-world industrial settings. This study provides additional results for optimal statistical control processes, highlighting the potential of ranked-set sampling approaches for enhancing process monitoring mechanisms.
    DOI/handle
    http://dx.doi.org/10.1016/j.cam.2023.115680
    http://hdl.handle.net/10576/60028
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