首页 | 本学科首页   官方微博 | 高级检索  
     检索      

计及气动和隐身约束结构综合优化的并行子空间优化方法
引用本文:苟仲秋,宋笔锋,李为吉.计及气动和隐身约束结构综合优化的并行子空间优化方法[J].计算力学学报,2007,24(1):81-85.
作者姓名:苟仲秋  宋笔锋  李为吉
作者单位:西北工业大学,航空学院,西安,710072
摘    要:通过分析基于响应面的并行子空间优化算法的特点指出并行子空间优化算法学科级优化的作用在于向系统级优化响应面提供性能优良的设计点.在此基础上,建立了不要求学科级优化的改进的并行子空间优化算法,进一步降低了设计优化的计算量,解决了分析模块与优化模块间的接口困难.依据该算法建立了结构、气动和隐身一体化设计优化框架,实现了某无人机机翼计及气动和隐身约束的结构综合优化.

关 键 词:多学科设计优化  并行子空间优化
文章编号:1007-4708(2007)01-0081-05
修稿时间:2005年2月26日

Application of updated concurrent subspace optimization in the structural optimization with constraints of aerodynamics and RCS of aircraft
GOU Zhong-qiu,SONG Bi-feng,LI Wei-ji.Application of updated concurrent subspace optimization in the structural optimization with constraints of aerodynamics and RCS of aircraft[J].Chinese Journal of Computational Mechanics,2007,24(1):81-85.
Authors:GOU Zhong-qiu  SONG Bi-feng  LI Wei-ji
Abstract:After the analysis of Concurrent Subspace Optimization (CSSO) process,this paper points out that the function of disciplinary optimization of CSSO is to offer experiment points of response surface of system optimization.Based on this conclusion,an Updated Concurrent Subspace Optimization(UCSSO) which does not require disciplinary optimization but uses Uniform Experiment Design to arrange experiment points is presented.According to the updated algorithm,the framework of structural optimization with constraints of aerodynamics and RCS of aircraft is researched.The result of structural optimization with constraints of aerodynamics and RCS to an unmanned aircraft wing proves that UCSSO can greatly reduce calculation time and decrease the difficulty of data exchange between discipline.
Keywords:Multi-disciplinary design optimization  concurrent subspace optimization
本文献已被 CNKI 维普 万方数据 等数据库收录!
点击此处可从《计算力学学报》浏览原始摘要信息
点击此处可从《计算力学学报》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号