156
Views
17
CrossRef citations to date
0
Altmetric
Articles

Asymmetric uniform designs based on mixture discrepancy

&
Pages 2280-2294 | Received 22 Mar 2015, Accepted 07 Jan 2016, Published online: 02 Feb 2016

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

Read on this site (3)

A. M. Elsawah, Yu Tang & Kai-Tai Fang. (2019) Constructing optimal projection designs. Statistics 53:6, pages 1357-1385.
Read now
A. M. Elsawah. A novel hybrid algorithm for designing mixed three- and nine-level experiments without modeling assumptions. Communications in Statistics - Simulation and Computation 0:0, pages 1-35.
Read now

Articles from other publishers (14)

A. M. Elsawah. (2023) A novel doubling-tripling-threshold accepting hybrid algorithm for constructing asymmetric space-filling designs. Journal of the Korean Statistical Society.
Crossref
Sixu Liu, Yaping Wang & Fasheng Sun. (2022) Two‐dimensional projection uniformity for space‐filling designs. Canadian Journal of Statistics 51:1, pages 293-311.
Crossref
Bochuan Jiang, Fei Wang & Yaping Wang. (2021) Construction of uniform mixed-level designs through level permutations. Metrika 85:6, pages 753-770.
Crossref
Neng-pu Yang, Fenling Feng, Quan Huang & Xiao-hua Liu. (2021) Optimized design to adverse transportation conditions for railway freight system. Accident Analysis & Prevention 154, pages 106091.
Crossref
A. M. Elsawah, Kai-Tai Fang & Xiao Ke. (2019) New recommended designs for screening either qualitative or quantitative factors. Statistical Papers 62:1, pages 267-307.
Crossref
A. M. Elsawah, Kai-Tai Fang, Ping He & Hong Qin. (2017) Optimum Addition of Information to Computer Experiments in View of Uniformity and Orthogonality. Bulletin of the Malaysian Mathematical Sciences Society 42:2, pages 803-826.
Crossref
A. M. Elsawah & Kai-Tai Fang. (2018) New results on quaternary codes and their Gray map images for constructing uniform designs. Metrika 81:3, pages 307-336.
Crossref
Kai-Tai Fang, Min-Qian Liu, Hong Qin & Yong-Dao ZhouKai-Tai Fang, Min-Qian Liu, Hong Qin & Yong-Dao Zhou. 2018. Theory and Application of Uniform Experimental Designs. Theory and Application of Uniform Experimental Designs 43 100 .
A. M. Elsawah, Jianwei Hu & Hong Qin. (2017) Effective lower bounds of wrap-around L2-discrepancy on three-level combined designs. Journal of Systems Science and Complexity 30:6, pages 1459-1469.
Crossref
Qingtai Xiao, Yuling Zhai, Zhihan Lv, Jianxin Xu, Jianxin Pan & Hua Wang. (2017) Non-uniformity quantification of temperature and concentration fields by statistical measure and image analysis. Applied Thermal Engineering 124, pages 1134-1141.
Crossref
A. M. Elsawah & Hong Qin. (2016) Optimum mechanism for breaking the confounding effects of mixed-level designs. Computational Statistics 32:2, pages 781-802.
Crossref
A. M. Elsawah. (2017) A powerful and efficient algorithm for breaking the links between aliased effects in asymmetric designs. Australian & New Zealand Journal of Statistics 59:1, pages 17-41.
Crossref
A.M. Elsawah & Hong Qin. (2016) An effective approach for the optimum addition of runs to three-level uniform designs. Journal of the Korean Statistical Society 45:4, pages 610-622.
Crossref
A.M. Elsawah. (2016) Constructing optimal asymmetric combined designs via Lee discrepancy. Statistics & Probability Letters 118, pages 24-31.
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.