Research of Technology and Application of MDO Development

Article Preview

Abstract:

In west DEMS areas of aerospace, MDO (Multidisciplinary Design Optimization) was the latest and most active design methods in recent years. Its main thinking is that: using DCNT (Distributed Computer Network Technology) to integrate knowledge of all subjects; using effective design optimization strategy to organize and manage of the design process. Its objective is to get the overall optimal solution by using the interaction and synergy between all subjections; to shorten the cycle by implementing of the parallel design. So that the developed the product would be more competitive. This thesis researched MDO development situation of home and aboard from three parts: Techniques and Methods、Integrated Framework software and Application for getting some inspiration how to research MDO now.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 538-541)

Pages:

2822-2828

Citation:

Online since:

June 2012

Authors:

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Winner RI, et al. The Role of Concurrent Engineering in Weapons System Acquisition, Report R-338, IDA, Washington, DC, 1988.

Google Scholar

[2] Tsai CS, Chang KH, Wang J. Integration Infrastracture for a Simulation-Based Design Environment Procedings of the Computers in Engineering Conference and the Engineering Data Symposium ASME Design Theory and Methodogy Conference, Boston, MA, 1995,8:9 - 20.

DOI: 10.1115/cie1995-0729

Google Scholar

[3] Giesing Joseph P, Barthelemy JM. A Summary of Industry MDO Applications and Needs. An AIAA White Paper, 7th AIAA / USAF / NASA / ISSMO Symposium on Multidisciplinary Analysis and Optimization, 1998.

DOI: 10.2514/6.1998-4737

Google Scholar

[4] Zhenguo, Chen Qian. Multidisciplinary Design Optimization Theory and Applications, Beijing: National Defence Industry Press.

Google Scholar

[5] Sobieszczanski-Sobieski J. A Linear Decomposition Method for Optimization Problems-Blueprint for Development. NASA Technical Memorandum 83248,1982.

Google Scholar

[6] AIAA Multidisciplinary Design Optimization Technical Committee. Current State of the Art on Multidisciplinary Design Optimization (MDO). An AIAA White Paper. ISBN 1-56347-021-7, Sept, 1991.

Google Scholar

[7] Sobieszcanski-Sobieski J, Haftka RT. Multidisciplinary Aerospace Design Optimization Survey of Recent Development. AIAA-96-0711.

Google Scholar

[8] Giesing Joseph P, Barthelemy JM. A Summary of Industry MDO Applications and Needs. An AIAA White Paper, 7th AIAA / USAF / NASA / ISSMO Symposium on Multidisciplinary Analysis and Optimization, 1998.

DOI: 10.2514/6.1998-4737

Google Scholar

[9] Section III military products, multi-disciplinary design optimization technical workshop materials [C]. Beijing 200411.

Google Scholar

[10] Saite Da Technology Co., Ltd. 2004 Proceedings [C]. Beijing 200411.

Google Scholar

[11] Sobieszczanki-Sobieski J. Optimization by Decomposition: A step from Hierarchic to Non-Hierachic Systemps. 2th NASA / Air Force Symposium on Recent Advances in Multidisciplinary Analysis and Optimization, Hampton, VA. Sept 1988 NASA-TM-101494, NASA -CP-3031, Par1.

Google Scholar

[12] Sobieszczanski-Sobieski J. The Sensitivity of Complex, Internally Coupled Systems AIAA Journal, 1990,28 (1).

DOI: 10.2514/3.10366

Google Scholar

[13] Hajela P. Application of global Sensitivity equations in multidisciplinary aircraft synthesis [J], Journal of Aircraft, 1990,27 (12): 1002-1010.

DOI: 10.2514/3.45974

Google Scholar

[14] Kroo I. Multidisciplinary Optimization Methods for Aircraft Preliminary Design [R], the AIAA-94-4325, 1994.

Google Scholar

[15] Renaud JE, Approximation in Nonhierarchic System Optimization, AIAA Journal, Vol32, No.1, Journal 1994.

Google Scholar

[16] Sellar RS, Response surface based concurrent subspace optimization for multidisciplinary system design [R]. AIAA-96-0714, 1996.

Google Scholar

[17] Bolebaum, CL. Formal and Heurisitic System Decomposition in Structural Optimization, NASA/CR-4413, 1991.

Google Scholar

[18] Renaud, JE. Improved Coordination in Nonhierarchic System Optimization, AIAA Journal, Vol.31No.12, Dec, 1993.

Google Scholar

[19] Gu Liang Yin, Gong Chunlin multidisciplinary design integration environment models and applications. Journal of Astronautics, Vol, 25.No 4.July 2004.

Google Scholar

[20] Gong Chunlin multidisciplinary design optimization techniques. Master thesis, Northwestern Polytechnical University, 2004.

Google Scholar

[21] Li Deng family Shi multidisciplinary optimization of integrated design framework [J]. Equipment design and maintenance ,1671-3133 (2003) 03-0077-03.

Google Scholar

[22] Wang Shu-Ho Lin book. Aircraft multidisciplinary design optimization software system. Journal of Beijing University of Aeronautics and Astronautics, Switch to Chinese, No. 1 January 2005.

Google Scholar

[23] Li Wei. Key technologies of the multi-disciplinary virtual prototype policy integration platform. A master's degree thesis, Jilin University, 2005.

Google Scholar

[24] Saite Da Technology Co., Ltd. 2004 Proceedings [C]. Beijing 200411.

Google Scholar

[25] Chu Chien-yuan, Chivey Wu Multidisciplinary Analysis and Computer Simulation of System Simulation, Vol.14 No. 11. Nov 2002.

Google Scholar

[26] Zhang Xiaotong, Xiong Guangleng support multidisciplinary collaborative design design constraint network technology of high-tech communications. 2004.2.

Google Scholar

[27] Hu Lingyun multidisciplinary design optimization technology in satellite design. Chinese manufacturing informatization. 2004.1.

Google Scholar

[28] LIU Wei, CUI Wei-cheng. Multidisciplinary Design Optimization (MDO): A promising tool for the design of HOV. Journal of Ship Mechmice Vol.8.No.6.Dec, 2004.

Google Scholar

[29] Qin Dongchen large mechanical structure of multi-disciplinary design optimization. Machine Tool & Hydraulics 2004. To Chinese Version.

Google Scholar

[30] Qin Dongchen auto body of multidisciplinary optimization design of modern machinery. 2004.5.

Google Scholar

[31] Zhang Ke Shi, Li Ji. Multidisciplinary aircraft conceptual design optimization techniques. Northwestern Polytechnical University, Fed.2005, Vol 23.No.1.

Google Scholar

[32] Wang Jing-chao. Multidisciplinary design optimization of the aero-engine three-dimensional single crystal turbine blades. Journal of Northwestern Polytechnical University. 2007.3.

Google Scholar

[33] Li Wei, sword, Yuan Wei-zheng. Based on genetic algorithm for the gyroscope multidisciplinary design optimization of mechanical strength. 2004,26 (2) :170-174.

Google Scholar

[34] Peng torpedo Multidisciplinary Design Optimization Theory and Applications. Journal of Northwestern Polytechnical University. 2004.3.

Google Scholar