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조회 108회 작성일 24-02-01 23:05

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Journal Journal of the Korean Institute of Industrial Engineers, 43(3), 164-175
Name Lee, D., Yang, J., Oh, S., Kim, B.
Year 2017

Dual response surface optimization (DRSO) attempts to optimize mean and variability of a process response variable using a response surface methodology. In general, mean and variability of the response variable are often in conflict. In such a case, the process engineer need to understand the tradeoffs between the mean and variability in order to obtain a satisfactory solution. Recently, a Posterior preference articulation approach to DRSO (P-DRSO) has been proposed. P-DRSO generates a number of non-dominated solutions and allows the process engineer to select the most preferred solution. By observing the non-dominated solutions, the DM can explore and better understand the trade-offs between the mean and variability. However, the non-dominated solutions generated by the existing P-DRSO is often incomprehensive and unevenly distributed which limits the practicability of the method. In this regard, we propose a modified P-DRSO using multiple objective genetic algorithms. The proposed method has an advantage in that it generates comprehensive and evenly distributed non-dominated solutions. 

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8 Link
7
Domestic Papers

Journal of the Korean Institute of Industrial Engineers, 49(2), 107-119

2023

24.02.19 252
Link
6
Domestic Papers

Journal of the Korean Institute of Industrial Engineers, 46(5), 452-465

2020

24.02.01 160
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5
Domestic Papers

Journal of the Korean Management Science, 45(1), 70-80

2019

24.02.01 242
Link
4
Domestic Papers

Journal of the Korean Management Science, 42(4), 135-146

2017

24.02.01 128
Link
3
Domestic Papers

Journal of the Korean Institute of Industrial Engineers, 43(5), 388-396

2017

24.02.01 120
Link
열람중
Domestic Papers

Journal of the Korean Institute of Industrial Engineers, 43(3), 164-175

2017

24.02.01 109
Link
1
Domestic Papers

Journal of the Korean Institute of Industrial Engineers, 39(5), 342-350

2013

24.02.01 140
Link

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