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Fuzzy TOPSIS for Multiresponse Quality Problems in Wafer Fabrication Processes

机译:晶圆制造过程中多响应质量问题的模糊TOPSIS

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The quality characteristics in the wafer fabrication process are diverse, variable, and fuzzy in nature. How to effectively deal with multiresponse quality problems in the wafer fabrication process is a challenging task. In this study, the fuzzy technique for order preference by similarity to an ideal solution (TOPSIS), one of the fuzzy multiattribute decision-analysis (MADA) methods, is proposed to investigate the fuzzy multiresponse quality problem in integrated-circuit (IC) wafer fabrication process. The fuzzy TOPSIS is one of the effective fuzzy MADA methods for dealing with decision-making problems under uncertain environments. First, a fuzzy TOPSIS methodology is developed by considering the ambiguity between quality characteristics. Then, a detailed procedure for the developed fuzzy TOPSIS approach is presented to show how the fuzzy wafer fabrication quality problems can be solved. Real-world data is collected from an IC semiconductor company and the developed fuzzy TOPSIS approach is applied to find an optimal combination of parameters. Results of this study show that the developed approach provides a satisfactory solution to the wafer fabrication multiresponse problem. This developed approach can be also applied to other industries for investigating multiple quality characteristics problems.
机译:晶片制造过程中的质量特征本质上是多样的,可变的和模糊的。如何有效地处理晶圆制造过程中的多响应质量问题是一项具有挑战性的任务。在这项研究中,提出了一种通过类似于理想解决方案(TOPSIS)的顺序偏好的模糊技术,这是一种模糊多属性决策分析(MADA)方法,旨在研究集成电路(IC)晶圆中的模糊多响应质量问题。制造过程。模糊TOPSIS是处理不确定环境下决策问题的有效模糊MADA方法之一。首先,通过考虑质量特征之间的歧义来开发模糊TOPSIS方法。然后,给出了开发的模糊TOPSIS方法的详细过程,以显示如何解决模糊晶片制造质量问题。实际数据是从一家IC半导体公司收集的,并且已开发的模糊TOPSIS方法可用于找到参数的最佳组合。这项研究的结果表明,所开发的方法为晶片制造多响应问题提供了令人满意的解决方案。这种发达的方法还可以应用于其他行业,以研究多个质量特征问题。

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