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Author(s):  
Yu-wen ZHANG ◽  
Bao-an LI ◽  
Xue-qiang LV ◽  
Ning SUN ◽  
Jing-Jing TIAN
Keyword(s):  

The Dark Web ◽  
2018 ◽  
pp. 319-333
Author(s):  
Sudhakar Ranjan ◽  
Komal Kumar Bhatia

Now days with the advent of internet technologies and ecommerce the need for smart search engine for human life is rising. The traditional search engines are not intelligent as well as smart and thus lead to the rise in searching costs. In this paper, architecture of a vertical search engine based on the domain specific hidden web crawler is proposed. To make a least cost vertical search engine improvement in the following techniques like: searching, indexing, ranking, transaction and query interface are suggested. The domain term analyzer filters the useless information to the maximum extent and finally provides the users with high precision information. Through the experimental result it is shown that the system works on accelerating the access, computation, storage, communication time, increased efficiency and work professionally.


2017 ◽  
Vol 7 (2) ◽  
pp. 19-33
Author(s):  
Sudhakar Ranjan ◽  
Komal Kumar Bhatia

Now days with the advent of internet technologies and ecommerce the need for smart search engine for human life is rising. The traditional search engines are not intelligent as well as smart and thus lead to the rise in searching costs. In this paper, architecture of a vertical search engine based on the domain specific hidden web crawler is proposed. To make a least cost vertical search engine improvement in the following techniques like: searching, indexing, ranking, transaction and query interface are suggested. The domain term analyzer filters the useless information to the maximum extent and finally provides the users with high precision information. Through the experimental result it is shown that the system works on accelerating the access, computation, storage, communication time, increased efficiency and work professionally.


2013 ◽  
Vol 32 (2) ◽  
pp. 407-410
Author(s):  
Jun ZHONG ◽  
Sheng-wei TIAN ◽  
Long YU

Author(s):  
Elena Bolshakova ◽  
Natalia Loukachevitch ◽  
Michael Nokel

Author(s):  
Roberto Basili ◽  
Maria Teresa Pazienza ◽  
Fabio Massimo Zanzotto
Keyword(s):  

1996 ◽  
Vol 63 (4) ◽  
pp. 891-902 ◽  
Author(s):  
M. M. Perez ◽  
L. C. Wrobel

In this paper a conceptually simple integral-equation formulation for homogeneous anisotropic linear elastostatics is presented. The basic idea of the approach proposed here is to rewrite the system of differential equations of the anisotropic problem to enable the use of the isotropic fundamental solution. This procedure leads to an extended form of Somigliana’s identity where a domain term occurs as a result of the anisotropy of the material. A supplementary integral equation is then established to cope with the resulting domain unknowns. Although the solution of these integral equations requires discretization of the contour of the structural component into boundary elements and its domain into internal cells, the numerical scheme presented here depends only on the boundary variables of the problem. Once the boundary solution is obtained it is possible to compute the unknowns within the domain, if required. The main objective of the present work is to develop an alternative integral-equation formulation that could be used to reduce the time needed to compute three-dimensional solutions for linear homogeneous anisotropic problems. Another possible advantage of the proposed formulation is its generality, which enables its direct extension to include dynamic and plastic effects in the analysis. Encouraging results are presented for four examples where structural elements are submitted to tension and shear effects.


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