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Titlebook: Neural Networks and Micromechanics; Ernst Kussul,Tatiana Baidyk,Donald C. Wunsch Book 2010 Springer-Verlag Berlin Heidelberg 2010 Image re

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书目名称Neural Networks and Micromechanics
编辑Ernst Kussul,Tatiana Baidyk,Donald C. Wunsch
视频video
概述This is an interdisciplinary field of research involving the use of neural network techniques for image recognition applied to tasks in the area of micromechanics..Includes supplementary material:
图书封面Titlebook: Neural Networks and Micromechanics;  Ernst Kussul,Tatiana Baidyk,Donald C. Wunsch Book 2010 Springer-Verlag Berlin Heidelberg 2010 Image re
描述Micromechanical manufacturing based on microequipment creates new possibi- ties in goods production. If microequipment sizes are comparable to the sizes of the microdevices to be produced, it is possible to decrease the cost of production drastically. The main components of the production cost - material, energy, space consumption, equipment, and maintenance - decrease with the scaling down of equipment sizes. To obtain really inexpensive production, labor costs must be reduced to almost zero. For this purpose, fully automated microfactories will be developed. To create fully automated microfactories, we propose using arti?cial neural networks having different structures. The simplest perceptron-like neural network can be used at the lowest levels of microfactory control systems. Adaptive Critic Design, based on neural network models of the microfactory objects, can be used for manufacturing process optimization, while associative-projective neural n- works and networks like ART could be used for the highest levels of control systems. We have examined the performance of different neural networks in traditional image recognition tasks and in problems that appear in micromechanical m
出版日期Book 2010
关键词Image recognition; Learning; Microassembly, micromachining; Micromechanics; Neural classifiers; Neural ne
版次1
doihttps://doi.org/10.1007/978-3-642-02535-8
isbn_softcover978-3-642-42611-7
isbn_ebook978-3-642-02535-8
copyrightSpringer-Verlag Berlin Heidelberg 2010
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Ernst Kussul,Tatiana Baidyk,Donald C. Wunsch IItures related to NiAs. It will be shown that both the metal ions and the polarizability of the anion determine which of these structures is favored. In the cubic close-packed anion array of the thiospinel lattice (Fig. 11.1), the metal ions occupy both octahedral and tetrahedral interstices. However
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Ernst Kussul,Tatiana Baidyk,Donald C. Wunsch IIestablished the structure of CuFeO. and confirmed that Cu(I) and Fe(III) were the species present rather than Cu(II) and Fe(II) (1–5). However, the results of research carried out at E. I. du Pont deNemours in the early 1970s extended these earlier studies to include delafossite compounds containing
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Ernst Kussul,Tatiana Baidyk,Donald C. Wunsch II a new form of bridging between metal ions. An OH ligand coordinated to a metal atom may form a short and symmetrical hydrogen bond to an H.O ligand of another metal atom, thereby forming a hydrogen oxide bridging ligand (H.O.) between these atoms. This ligand was first discovered and recognized as
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Ernst Kussul,Tatiana Baidyk,Donald C. Wunsch II a new form of bridging between metal ions. An OH ligand coordinated to a metal atom may form a short and symmetrical hydrogen bond to an H.O ligand of another metal atom, thereby forming a hydrogen oxide bridging ligand (H.O.) between these atoms. This ligand was first discovered and recognized as
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