• CN:11-2187/TH
  • ISSN:0577-6686

›› 2009, Vol. 45 ›› Issue (4): 231-237.

• 论文 • 上一篇    下一篇

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耦合多学科设计系统中参数映射方法

王成恩;马明旭;黄章俊   

  1. 东北大学流程工业综合自动化重点实验室
  • 发布日期:2009-04-15

Parameter Mapping Method for Coupled Multidisciplinary Design Systems

WANG Chengen;MA Mingxu; HUANG Zhangjun   

  1. Key Laboratory of Process Industry Automation, Northeastern University
  • Published:2009-04-15

摘要: 正确地辨识和有效地管理多学科设计模型之间的耦合关系是实现复杂产品多学科设计优化的基础。针对复杂产品研制需求,采用集合概念建立了多学科耦合关系的概念模型。然后,采用面向对象方法实现了耦合多学科设计模型(系统)的参数辨识和表达,并且通过文件解析方法自动关联多学科模型求解器(设计系统)间的输入输出参数。此参数映射方法在参数层次上控制多学科设计数据生成、获取、转换、存储和计算过程,实现了多学科异构数据源互操作。此参数映射方法可以支持耦合学科模型求解器集成,并且支持多学科计算进程的协同调度。此参数映射方法应用于航空装备研制,显著提高了设计效率和设计质量。

关键词: 参数映射, 多学科优化设计, 耦合模型, 文件解析

Abstract: Accurate recognition and effective management of coupling relationships among multidisciplinary design models is fundamental to implementation of Multidisciplinary Design Optimization in complex product developments. In view of the demand of complex product developments, a conceptual model of multidisciplinary coupling relationships is built by adopting the set concept. Subsequently, an object-oriented method is used for parameter recognition and representation; and automatic interconnections among multidisciplinary model solvers (design systems) are created by parsing data files. The parameter mapping approach controls and manages data generation, access, conversion, storage and computation processes at individual parameter granularity, enabling interoperations among heterogeneous multidisciplinary data sources. The approach also enables integration of coupled disciplinary model solvers, and effective coordination of multidisciplinary computation processes. The parameter mapping approach has been applied to aero-system developments, and which significantly improves the efficiency and quality of design.

Key words: Coupling model, File parsing, Multidisciplinary design optimization, Parameter mapping

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