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Student advising decision to predict student's future GPA based on Genetic Fuzzimetric Technique (GFT)

机译:学生咨询决定预测基于遗传学模型技术(GFT)的学生未来GPA

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Decision making and/or Decision Support Systems (DSS) using intelligent techniques like Genetic Algorithm and fuzzy logic is becoming popular in many new applications. Combining these techniques provides an enhanced capability of any decision support systems (DSS. This paper discusses a modular approach toward implementing Genetic Fuzzy system termed as “Genetic Fuzzimetric Technique” (GFT). The technique utilizes input importance factor to combine the modular structure into final decision process. The objective of this combination provides the ability of the system to interact and “take decision” in an environment in the same manner as the human decision maker would do. This proposed system is ideal in cases where mathematical modeling either does not exist or insufficient for appropriate decision making under uncertainty. Most of real life decision making processes are of that type of uncertainty. One such problem is to decide on the predicted GPA level for students during the admission process to the university. This is mainly dependent on High School (HS) performance, Sophomore Exam (SE) results and English exam (EEE) performance. Looking at the historical data of students, fuzzy logic can be used to develop rules based on these data. Genetic Algorithm would be used to optimize the performance of the system.
机译:使用智能技术等遗传算法和模糊逻辑等智能技术的决策和/或决策支持系统(DSS)在许多新应用中都变得流行。结合这些技术提供了任何决策支持系统的增强能力(DSS。本文讨论了实现遗传模糊系统称为“基因模糊技术”(GFT)的模块化方法。该技术利用输入重要性因子将模块化结构与最终组合起来决策过程。这种组合的目的能够以与人类决策者所做的方式相同的方式在环境中互动和“在环境中取出决定”的目标。这个提议的系统是理想的情况,在数学建模不存在的情况下或者不足以在不确定性下做出适当的决策。大多数现实生活决策过程都是这种不确定性的类型。一个这样的问题是在向大学的入学过程中决定学生预测的GPA水平。这主要取决于高度学校(HS)表现,大二学生考试(SE)结果和英语考试(EEE)表现。看着学生的历史数据,模糊逻辑可用于根据这些数据开发规则。遗传算法将用于优化系统的性能。

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