• CN:11-2187/TH
  • ISSN:0577-6686

›› 2005, Vol. 41 ›› Issue (12): 108-117.

• 论文 • 上一篇    下一篇

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基于多粒度共进化功能推理的机械运动方案设计新方法

肖人彬;刘勇;梅顺齐;董方敏   

  1. 华中科技大学CAD中心;武汉科技学院机电工程学院
  • 发布日期:2005-12-15

NEW APPROACH TO MECHANICAL KINEMATIC SCHEME GENERATION BASED ON MULTI-GRANULARITY CO-EVOLUTIONARY FUNCTION REASONING

Xiao Renbin;Liu Yong;Mei Shunqi;Dong Fangmin   

  1. CAD Center, Huazhong University of Science and Technology School of Mechanical and Electrical Engineering, Wuhan University of Science and Engineering
  • Published:2005-12-15

摘要: 提出了基于多粒度共进化功能推理的机械运动方案设计方法。首先分析了共进化功能推理模型和多粒度设计模型的特点,并结合二者的优点构造了一种多粒度的共进化功能推理模型;然后将该推理模型应用于机械运动方案设计,提出了一种面向机械运动方案设计的共进化功能推理方法,该方法采用分类功能来描述机构单元及机械系统的运动特征信息,将机构单元和机械系统都采用运动功能变换函数进行抽象表达,通过功能推理来生成机械运动变换单元的串联组合方案;随即给出了相应的功能推理算法流程,通过与已有算法的比较详细分析了该算法的特性,并讨论说明了该算法所具有的效率高、可精确描述运动功能变换特性等优点;最后通过电线进给机构运动方案设计实例验证了该方法的有效性。

关键词: 多粒度, 功能推理, 共进化, 运动方案设计, X射线断层扫描, 钢轨, 滚动接触疲劳裂纹, 裂纹扩展, 重构

Abstract: A new approach to mechanical kinematic scheme generation based on multi-granularity co-evolutionary function reasoning is proposed. Firstly, features of co-evolutionary function reasoning model and multi-granularity design model are investigated, then a multi-granularity co-evolutionary function reasoning model is constructed by integrating their strongpoint. Such a model is applied into the kinematic scheme generation and a co-evolutionary algorithm for kinematic scheme genera-tion is presented, in which classified functions are used to de-scribe the kinematic characters of mechanical system and mechanisms, each mechanism and mechanical system is ex-pressed by a motion-transforming function abstractly and series-connected mechanical kinematic schemes are generated based on function reasoning. Next, detailed flow of function reasoning algorithm is provided and the characteristics of the algorithm are analyzed by comparing with those of existed algorithms. Further, the advantages of the algorithm, such as high computing efficiency, high precision in describing motion transformation, are discussed. Finally, kinematic scheme gen-eration of a wire-feeding mechanism is used to verify the effec-tiveness of the new approach.

Key words: Co-evolution, Function reasoning, Kinematic scheme generation, Multi-granularity, Crack propagation, Reconstruction, Rolling contact fatigue crack, X-ray Computed Tomography Scan, Rail

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