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Using support vector machine for materials design

delete2013-06-05
delete54
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OA
AI
陆文聪 (Wencong Lu) *
X
Xiaobo Ji
李敏杰 cover
李敏杰 (Minjie Li)
刘亮 (Liang Liu)
B
Baohua Yue
L
Liang-Miao Zhang
DOI:10.1007/s40436-013-0025-2delete
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Abstract

Abstract

En 中文
Materials design is the most important and fundamental work on the background of materials genome initiative for global competitiveness proposed by the National Science and Technology Council of America. As far as the methodologies of materials design, besides the thermodynamic and kinetic methods combing databases, both deductive approaches so-called the first principle methods and inductive approaches based on data mining methods are gaining great progress because of their successful applications in materials design. In this paper, support vector machine (SVM), including support vector classification (SVC) and support vector regression (SVR) based on the statistical learning theory (SLT) proposed by Vapnik, is introduced as a relatively new data mining method to meet the different tasks of materials design in our lab. The advantage of using SVM for materials design is discussed based on the applications in the formability of perovskite or BaNiO3 structure, the prediction of energy gaps of binary compounds, the prediction of sintered cold modulus of sialon-corundum castable, the optimization of electric resistances of VPTC semiconductors and the thickness control of In2O3 semiconductor film preparation. The results presented indicate that SVM is an effective modeling tool for the small sizes of sample sets with great potential applications in materials design.
Keywords:
Support vector machine
Materials genome initiative
Materials design
Data mining Quantitative

Journal

Advances in Manufacturing cover
Advances in Manufacturing
IF:
3.8
Papers:
598
Citations:
1.9K

Organization

S
shanghai university
Scholars:
3.9W
Papers: 2.7W
Citations: 52