335
Views
40
CrossRef citations to date
0
Altmetric
Articles

Optimal design of the adaptive EWMA chart for the mean based on median run length and expected median run length

, ORCID Icon, &
Pages 439-458 | Received 30 Jun 2017, Accepted 01 Apr 2018, Published online: 18 Apr 2018

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (18)

Nirpeksh Kumar & Sonam Jaiswal. (2023) The design of two-sided S2-chart with estimated in-control process variance based on conditional median run length. Quality Technology & Quantitative Management 0:0, pages 1-18.
Read now
Ming Ha Lee, Michael B. C. Khoo, Abdul Haq, Dennis M. L. Wong & XinYing Chew. (2023) Synthetic c charts with known and estimated process parameters based on median run length and expected median run length. Quality Technology & Quantitative Management 20:2, pages 168-183.
Read now
XueLong Hu, YuLong Qiao, PanPan Zhou, JianLan Zhong & Shu Wu. (2023) Modified one-sided EWMA charts for monitoring time between events. Communications in Statistics - Simulation and Computation 52:3, pages 1041-1056.
Read now
FuPeng Xie, Philippe Castagliola, Zhonghua Li, JinSheng Sun & XueLong Hu. (2022) One-sided Adaptive Truncated Exponentially Weighted Moving Average X¯ Schemes for Detecting Process Mean Shifts. Quality Technology & Quantitative Management 19:5, pages 533-561.
Read now
Abdul Haq, Haleema Sadia & Michael B.C. Khoo. (2022) A parameter-free adaptive EWMA chart with variable sample sizes and variable sampling intervals for the process mean. Journal of Statistical Computation and Simulation 92:13, pages 2802-2828.
Read now
Z. L. Chong, K. L. Tan, Michael B. C. Khoo, W. L. Teoh & P. Castagliola. (2022) Optimal designs of the exponentially weighted moving average (EWMA) median chart for known and estimated parameters based on median run length. Communications in Statistics - Simulation and Computation 51:7, pages 3660-3684.
Read now
Sofia Sivena & Yiannis Nikolaidis. (2022) Higher education teaching and exploitation of student evaluations through the use of control charts: revisited and expanded. Communications in Statistics - Simulation and Computation 0:0, pages 1-25.
Read now
YuLong Qiao, JinSheng Sun, Philippe Castagliola & XueLong Hu. (2022) Optimal design of one-sided exponential EWMA charts based on median run length and expected median run length. Communications in Statistics - Theory and Methods 51:9, pages 2887-2907.
Read now
Rashid Mehmood, Muhammed Hisyam Lee, Muhammad Riaz, Baber Zaman & Iftikhar Ali. (2022) Hotelling T2 control chart based on bivariate ranked set schemes. Communications in Statistics - Simulation and Computation 51:1, pages 1-28.
Read now
XueLong Hu, Philippe Castagliola, Anan Tang & Jianlan Zhong. (2021) Guaranteed conditional performance of the median run length based EWMA chart with unknown process parameters. Communications in Statistics - Simulation and Computation 50:12, pages 4280-4299.
Read now
Aya A. Aly, Nesma A. Saleh & Mahmoud A. Mahmoud. (2021) An adaptive exponentially weighted moving average control chart for poisson processes. Quality Engineering 33:4, pages 627-640.
Read now
Piyatida Phanthuna, Yupaporn Areepong & Saowanit Sukparungsee. (2021) Run length distribution for a modified EWMA scheme fitted with a stationary AR(p) model. Communications in Statistics - Simulation and Computation 0:0, pages 1-20.
Read now
Shu Wu, Philippe Castagliola, Athanasios C. Rakitzis & Petros E. Maravelakis. (2021) Design of attribute EWMA type control charts with reliable run length performance. Communications in Statistics - Simulation and Computation 0:0, pages 1-17.
Read now
XueLong Hu, Philippe Castagliola, JianLan Zhong, AnAn Tang & YuLong Qiao. (2021) On the performance of the adaptive EWMA chart for monitoring time between events. Journal of Statistical Computation and Simulation 91:6, pages 1175-1211.
Read now
Abdul Haq & Michael B. C. Khoo. (2020) A parameter-free adaptive EWMA mean chart. Quality Technology & Quantitative Management 17:5, pages 528-543.
Read now
Tahir Nawaz & Dong Han. (2020) Monitoring the process location by using new ranked set sampling-based memory control charts. Quality Technology & Quantitative Management 17:3, pages 255-284.
Read now
Abdul Haq. (2020) A maximum adaptive exponentially weighted moving average control chart for monitoring process mean and variability. Quality Technology & Quantitative Management 17:1, pages 16-31.
Read now

Articles from other publishers (22)

Rapin Sunthornwat, Saowanit Sukparungsee & Yupaporn Areepong. (2023) Analytical Explicit Formulas of Average Run Length of Homogenously Weighted Moving Average Control Chart Based on a MAX Process. Symmetry 15:12, pages 2112.
Crossref
Phunsa Mongkoltawat, Yupaporn Areepong & Saowanit Sukparungsee. (2023) Exact Average Run Length Evaluation on One-Sided and Two-Sided Extended EWMA Control Chart with Correlated Data. WSEAS TRANSACTIONS ON MATHEMATICS 22, pages 819-830.
Crossref
Z. L. Chong, W. L. Teoh, H. W. You, W. C. Yeong & M. B. C. Khoo. (2023) Construction of the Shewhart Median Chart Based on the Expected Percentile Run Length. Construction of the Shewhart Median Chart Based on the Expected Percentile Run Length.
Aamir Saghir, XueLong Hu, Kim Phuc Tran & Zhi Song. (2023) Optimal design and evaluation of adaptive EWMA monitoring schemes for Inverse Maxwell distribution. Computers & Industrial Engineering 181, pages 109290.
Crossref
Anan Tang, Amitava Mukherjee & Yuanman Ma. (2023) An optimally designed distribution‐free CUSUM procedure for tri‐aspect surveillance of continuous processes. Quality and Reliability Engineering International.
Crossref
Anan Tang, Amitava Mukherjee & Ximing Wang. (2023) Distribution-free Phase-II monitoring of high-dimensional industrial processes via origin and modified interpoint distance based algorithms. Computers & Industrial Engineering 179, pages 109161.
Crossref
Yifan Li, Jinhua Qin & Chunjie Wu. (2023) A robust adaptive exponentially weighted moving average control chart with a distribution-free design strategy. Computers & Industrial Engineering 177, pages 109083.
Crossref
Moi Hua Tuh, Cynthia Mui Lian Kon, Hong Siang Chua, Man Fai Lau & Yee Hui Robin Chang. (2023) Evaluating the Performance of Synthetic Double Sampling np Chart Based on Expected Median Run Length. Mathematics 11:3, pages 595.
Crossref
Kotchaporn Karoon, Yupaporn Areepong & Saowanit Sukparungsee. (2023) Trend Autoregressive Model Exact Run Length Evaluation on a Two-Sided Extended EWMA Chart. Computer Systems Science and Engineering 44:2, pages 1143-1160.
Crossref
Moi Hua Tuh, Cynthia Mui Lian Kon, Hong Siang Chua & Man Fai Lau. (2022) Optimal statistical design of the double sampling np chart based on expected median run length. Frontiers in Applied Mathematics and Statistics 8.
Crossref
Anan Tang, Yongtu Wang, Ximing Wang & Xuelong Hu. (2022) A Distribution-Free CUSUM Scheme for Monitoring Location and Scale in High-Dimensional Processes. A Distribution-Free CUSUM Scheme for Monitoring Location and Scale in High-Dimensional Processes.
Abdul Haq & Michael B. C. Khoo. (2021) A novel partially parameter‐free adaptive multivariate EWMA mean chart. Quality and Reliability Engineering International 38:1, pages 574-591.
Crossref
Anan Tang, Philippe Castagliola, Xuelong Hu & Xiaojian Zhou. (2021) Optimal one‐ and two‐sided adaptive EWMA scheme for monitoring Poisson count data. Quality and Reliability Engineering International 37:5, pages 2248-2262.
Crossref
Ioannis S. Triantafyllou & Mangey Ram. (2021) Nonparametric EWMA-Type Control Charts for Monitoring Industrial Processes: An Overview. International Journal of Mathematical, Engineering and Management Sciences 6:3, pages 708-751.
Crossref
H W You, M A Shahrin & Z Mustafa. (2021) Design of EWMA-type control chart. IOP Conference Series: Materials Science and Engineering 1101:1, pages 012032.
Crossref
YuLong Qiao, XueLong Hu, JinSheng Sun & Qin Xu. (2020) Optimal design of one‐sided exponential cumulative sum charts with known and estimated parameters based on the median run length. Quality and Reliability Engineering International 37:1, pages 123-144.
Crossref
Piyatida Phanthuna, Yupaporn Areepong & Saowanit Sukparungsee. (2021) Exact Run Length Evaluation on a Two-Sided Modified Exponentially Weighted Moving Average Chart for Monitoring Process Mean. Computer Modeling in Engineering & Sciences 127:1, pages 23-41.
Crossref
XueLong Hu, Philippe Castagliola, AnAn Tang, XiaoJian Zhou & PanPan Zhou. (2020) Conditional median run length performance of the synthetic X¯ chart with unknown process parameters. Quality and Reliability Engineering International 36:3, pages 1111-1131.
Crossref
Nirpeksh Kumar & Amita Baranwal. (2019) Design and implementation of q th quantile‐unbiased t r ‐chart for monitoring times between events . Quality and Reliability Engineering International 35:4, pages 1061-1080.
Crossref
Anan Tang, Jinsheng Sun, Xuelong Hu & Philippe Castagliola. (2019) A new nonparametric adaptive EWMA control chart with exact run length properties. Computers & Industrial Engineering 130, pages 404-419.
Crossref
Anan Tang, Philippe Castagliola, Xuelong Hu & Jinsheng Sun. (2018) The performance of the adaptive EWMA median chart in the presence of measurement error. Quality and Reliability Engineering International 35:1, pages 423-438.
Crossref
Yulong Qiao, Xuelong Hu, Jinsheng Sun & Qin Xu. (2019) Optimal Design of One-Sided Exponential EWMA Charts With Estimated Parameters Based on the Median Run Length. IEEE Access 7, pages 76645-76658.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.