Program Evaluation Model of Bridge Blasting of Engineer Corps Based on Intuitionist Fuzzy Sets and TOPSIS Method

Article Preview

Abstract:

The implementation of bridge blasting process for ground burst unit of Corps Engineers is complex with lots of impact factors, and it is difficult to determine the blasting program. In order to better solve the problem, the author in this paper proposes a new assessing approach of bridge blasting program based on combination of intuitionist fuzzy set theory and TPOSIS, and defines the optimal solution as well as worst solution of intuitionist fuzzy concept, building the evaluation index system of bridge blasting program majors in blasting target, the implementation staff for blasting, blasting tools and equipments. In this way, the author establishes the model of corps engineers of bridge blasting program based on intuitionist fuzzy sets and TOPSIS method, and verifies the model through the use of instances to prove the feasibility and effectiveness of the model with this method.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

466-471

Citation:

Online since:

December 2012

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Xia Jun, Zhou Ming-an, Xiao Zhiwu(2011). Explosive Demolition of Unsafe Bridge in Complex Environment,. Blasting, Vol. 28, No. 4, Dec. 2011, pp.81-84.

Google Scholar

[2] Liu Jun, Qin Genjie(2008). Demolition of a Bridge by Controlled Blasting and the Effect of Precutting Measure,. Blasting, Vol. 25, No. 4, Dec. 2008, pp.73-76.

Google Scholar

[3] Yao Jinjie(2001). Demolition of Scrapped Bridge-beam by Controlled Blasting,. Blasting, Vol. 18, No. 2, Jun. 2001, pp.79-80.

Google Scholar

[4] Dong Peng, Dai Feng, Zhao Tao, LI Tianhe(2009). Assessment of Emergency Management Capability of City Disaster Based on Intuitive Fuzzy Set, . Journal of Information Engineering University. Vol. 10, No. 3, Sep. 2009, pp.425-428.

Google Scholar

[5] Lei Yingjie, Wang Baoshu, Wang yi(2006). Techniques for Battlefield Situation AssessmentBased on Intuitionistic Fuzzy Decision,. Acta Electronica Sinica. Vol. 34, No. 12, Dec. 2006, pp.2175-2179.

Google Scholar

[6] Guo Zixue, Zhang Qiang (2008). The Evaluation of Emergency Plans Based on IntuitionisticFuzzy Sets,. Mathematics in Practice and Theory. Vol. 38, No. 22, Nove. 2008, pp.64-68.

Google Scholar

[7] Chen Dongfeng, Lei Yingjie (2006). An Intuitionistic Fuzzy Inference Method for ThreatAssessment,. Command Control & Simulation. Vol. 28, No. 4, Aug. 2006, pp.21-24.

Google Scholar

[8] Liang Xiaohong (2006). Research and Exploitation of Expert System on Bridge Blasting,. Modern computer. Nov. 2006, pp.70-72.

Google Scholar

[9] Zhang Xingmao (2006). Brief analysis demolition technology in bridge application, China Water Transport(Theory Edition). Vol. 4, No. 4, April. 2006, pp.104-105.

Google Scholar

[10] Gao Zhihai, Wei Cuiping. Formula of interval-valued intuitionistic fuzzy entropy and its applications,. Computer Engineering and Applications. 2012. 48 (2), pp.53-55.

Google Scholar

[11] Zhang Yi, Jiang Qingshan. Effectiveness evalution of early-warning aircraft based on hierarchy TOPSIS,. Systems Engineering and Electronics. Vol. 33, No. 5, May. 2011, pp.1051-1054.

Google Scholar

[12] Zhang Xiaoping (2011). Research of Ranking Problem Based on TOPSIS,. Journal of Fujian Normal University (Natural Science Edition). Vol. 27, No. 4, Jul. 2011, pp.39-43.

Google Scholar