Research on the Application of Civic Education into the Brain and Heart Based on Physiological Data Recognition Algorithm

This paper designs a Civic Education model based on a physiological data identification algorithm, highlighting the training enhancement of physiological data mining Civic Education for students. In the design process, the clustering similarity is calculated based on the attribute distance, and the...

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Main Authors: Zhang Guanglei, Li Min
Format: Article
Language:English
Published: Sciendo 2024-01-01
Series:Applied Mathematics and Nonlinear Sciences
Subjects:
Online Access:https://doi.org/10.2478/amns.2023.2.00529
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author Zhang Guanglei
Li Min
author_facet Zhang Guanglei
Li Min
author_sort Zhang Guanglei
collection DOAJ
description This paper designs a Civic Education model based on a physiological data identification algorithm, highlighting the training enhancement of physiological data mining Civic Education for students. In the design process, the clustering similarity is calculated based on the attribute distance, and the optimal number of clusters is selected using the contour coefficient. On the basis of determining the optimal number of clusters, the maximum number of iterations is performed, and the output at termination is used to divide the thinking and teaching ability and ability assessment index association distinction. The minimum confidence threshold association rule is developed through the candidate item support, and weighted random selection is performed for each dimension. To verify the feasibility of this educational model, its teaching effect is analyzed. The experimental results show that the accuracy of the output results is high, and the average time of Civic Education of the philosophy of dealing with the world is about 0.65 seconds. The highest psychological recall rate of Civic Education reached 0.59. It shows that physiological data mining can guide students to build a Civic Education thinking system so that the course and Civic Education can form a synergistic effect, thus forming a horizontal and vertical synergistic education situation.
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spelling doaj.art-b44337162df846c5a83e647b296ee3f22024-01-29T08:52:33ZengSciendoApplied Mathematics and Nonlinear Sciences2444-86562024-01-019110.2478/amns.2023.2.00529Research on the Application of Civic Education into the Brain and Heart Based on Physiological Data Recognition AlgorithmZhang Guanglei0Li Min11Zhengzhou Railway Vocational & Technical College, Zhengzhou, Henan, 450052, China.1Zhengzhou Railway Vocational & Technical College, Zhengzhou, Henan, 450052, China.This paper designs a Civic Education model based on a physiological data identification algorithm, highlighting the training enhancement of physiological data mining Civic Education for students. In the design process, the clustering similarity is calculated based on the attribute distance, and the optimal number of clusters is selected using the contour coefficient. On the basis of determining the optimal number of clusters, the maximum number of iterations is performed, and the output at termination is used to divide the thinking and teaching ability and ability assessment index association distinction. The minimum confidence threshold association rule is developed through the candidate item support, and weighted random selection is performed for each dimension. To verify the feasibility of this educational model, its teaching effect is analyzed. The experimental results show that the accuracy of the output results is high, and the average time of Civic Education of the philosophy of dealing with the world is about 0.65 seconds. The highest psychological recall rate of Civic Education reached 0.59. It shows that physiological data mining can guide students to build a Civic Education thinking system so that the course and Civic Education can form a synergistic effect, thus forming a horizontal and vertical synergistic education situation.https://doi.org/10.2478/amns.2023.2.00529physiological data miningclustering similaritycontour coefficientthe maximum number of iterations97b20
spellingShingle Zhang Guanglei
Li Min
Research on the Application of Civic Education into the Brain and Heart Based on Physiological Data Recognition Algorithm
Applied Mathematics and Nonlinear Sciences
physiological data mining
clustering similarity
contour coefficient
the maximum number of iterations
97b20
title Research on the Application of Civic Education into the Brain and Heart Based on Physiological Data Recognition Algorithm
title_full Research on the Application of Civic Education into the Brain and Heart Based on Physiological Data Recognition Algorithm
title_fullStr Research on the Application of Civic Education into the Brain and Heart Based on Physiological Data Recognition Algorithm
title_full_unstemmed Research on the Application of Civic Education into the Brain and Heart Based on Physiological Data Recognition Algorithm
title_short Research on the Application of Civic Education into the Brain and Heart Based on Physiological Data Recognition Algorithm
title_sort research on the application of civic education into the brain and heart based on physiological data recognition algorithm
topic physiological data mining
clustering similarity
contour coefficient
the maximum number of iterations
97b20
url https://doi.org/10.2478/amns.2023.2.00529
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