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    Development of a Software for Structural Optimization with ANSYS Analyzer
    以ANSYS为分析器的结构优化软件研制
    Development of a Software for Structural Optimization with Ansys Analyzer--For Composite Structure of Bar, Beam and Shell Elements
    以ANSYS为分析器的结构优化软件研制——杆板组合结构优化
    Development of a Software for Structural Optimization with ANSYS Analyzer--For Combination Structure of Truss and Frame
    以ANSYS为分析器的结构优化软件研制——杆梁组合结构优化
    Engineering Utility Development of SOGA Software for Structural Optimization
    结构优化软件SOGA的工程实用化研究
    Engineering Practical Development of SOGA Software for Structural Optimization
    结构优化软件SOGA的工程实用化研究
    The current ASIP design method confronts many problems, such as architecture optimization and software retargetable compilation.
    当前ASIP处理器设计方法还面临着许多问题,如体系结构优化、软件代码的可重定向编译等,这些都阻碍了ASIP处理器设计方法的广泛应用.
    It regards power supply areas as its object for research. It has carried on index analysis, such as network loss, voltage quality, and reliability and so on, adopts adjacent matrix, correlation matrix, path matrix and sequence matrix to describe the optimizing arithmetic for distribution network and works out the optimizing structure software in distribution network to apply in some area of Chongqing.
    以供电区域为研究对象,对线损、电压质量、可靠性等性能分析,并采用邻接矩阵、相关矩阵、路由矩阵、顺序矩阵描述配电网络优化的算法和编制了采用这种算法进行配电网络结构优化的软件,应用于重庆某地区配电网络后效果明显。
    Therefore, to develop an integrated software system based on thetechnique of scientific visualization, and enable the visualization to be utilized inoptimization will be considerably beneficial to the application of optimization inengineering.
    开发一个完整的结构优化软件系统,并同计算机可视化技术相结合,使可视化贯穿于优化设计的全过程,能加速普及工程优化技术在工程实际中的应用,具有深刻的现实意义。
    Based on the analysis of system of the structural optimization and scientificvisualization, the framework of software system based on scientific visualization isdesigned in detail.
    本文在对面向工程的广义优化设计体系和科学计算可视化体系结构进行客观分析的基础上,详细地设计了基于可视化的结构优化软件系统的总体框架;
    The parallel models of Genetic Algorithm and the architecture of structuraloptimization software are discussed in the last part of this paper.
    最后,本文还对遗传优化算法的并行计算实现模型和结构优化软件设计问题进行了初步探讨。
    Based on previous research works of structure optimization design, from the practical need of engineering application, integrating general FEA software with high efficient optimization method, this paper researched a rudimentary version of a structure optimization software with the analyzer of famous commercial software ANSYS.
    本文在汲取前人结构优化设计理论研究成果的基础上,从工程应用的实际出发,将通用有限元分析软件与高效的优化算法结合起来,研制了一个以著名商用软件ANSYS为分析器的结构优化软件雏形。
    The paper also studied some ANSYS data files, realized the analytical sensitivity analysis of structure optimization and data interchange between optimization and analysis, integrated ANSYS with Guide-weight criteria method into an embryonic form of general optimization software.
    本文还研究了ANSYS的各种数据接口文件,实现了结构优化设计的解析灵敏度计算以及优化模块与分析模块的数据交流,并将ANSYS分析器与结构优化导重法有机集成,编程实现了软件的所有主要功能,形成了一个通用高效的结构优化软件雏形。
    This paper studies the numerical methods of the temperature field and design optimization for thermal shock problems. And the method of parametric identification is presented based on the sensitivity analysis and design optimization. The methods of this paper have been implemented in the large-scale software of finite element analysis and structural design optimization JIFEX.
    本文研究热冲击问题的温度场分析与优化设计的数值方法,在灵敏度分析与优化设计方法的基础上进行热冲击问题的参数识别,并且在大型有限元分析和结构优化软件系统(?)
    Therefore, to develop an integrated software system will be considerably beneficial to the application of optimization in engineering.
    开发一个高效实用的结构优化软件,对于加速普及优化技术在工程实际中的应用,具有重要现实意义。
    From the practical need of engineering application, this paper has added the shell optimization function based on the former software only can perform sizing optimization of bar and beam element.
    本文从工程应用实际出发,在以ANSYS为分析器的结构优化软件SOGA基础上,进一步扩充了其软件的单元库,使该软件的功能从只能进行杆系结构优化扩充到可以对板壳结构和杆板组合结构进行优化。
    The paper also realized the analytical sensitivity analysis of structure optimization and data interchange between optimization and analysis, integrated ANSYS with Guide-weight criteria method into an embryonic form of general optimization software.
    本文将ANSYS分析器与结构优化导重法有机集成,形成了一个通用高效的杆板组合结构优化软件,重点解决了利用ANSYS作为分析器进行杆板组合结构解析灵敏度分析计算的难点。
    Based on previous research works of structure optimization design, from the practical need of engineering application, this paper extended functions of the software SOGA which can only optimize truss structure by using ANSYS software as a analysis tool, in order to further optimize the combination structure of truss and frame . So the practicability of SOGA software has greatly been improved.
    本文基于前人结构优化理论与方法研究成果,从工程应用的实际出发,将已有雏形的以ANSYS为分析器的结构优化软件SOGA的功能从只能优化桁架结构进一步扩充到可以优化杆-梁组合结构,使得该软件完全能够处理各种类型的杆系结构,实用性得到了进一步提高。
    The paper mainly studied some ANSYS data files, realized the analytical sensitivity analysis of five typical section beam (circle section beam, rectangle section beam, GONGZI section beam, box section beam and cirque section beam) and data interchange between optimization module and analysis module, integrated ANSYS with Guide-weight criteria method and formed a universal and efficient optimization software of combination structure of truss and frame.
    本文主要研究了ANSYS的各种数据接口文件,实现了五种典型截面梁(圆截面梁,矩形截面梁,工字截面梁,盒式截面梁和圆环截面梁)的截面细节尺寸变量与任意截面梁的截面特性变量的解析灵敏度计算以及优化模块与分析模块的数据交流,并将ANSYS分析器与结构优化导重法有机集成,形成了一个通用高效的杆系结构优化软件
    At present, Development of a software system based on scientific visualization for the whole process of structural optimization appears a leading evolution in the field of structure optimization.
    目前,工程结构优化的一个重要发展趋势是,同计算可视化技术相结合,开发完整的结构优化软件系统,来加速结构优化技术在工程中的实际应用。
    The Optimization Software of Antenna Structure based on VisualizationTechnology is an important module of the Synthetical Design Platform of AntennaStructure. The paper aims at offering high-efficient and reliable optimizationalgorithms and practical procedures which are based on corresponding algorithm forthe Optimization Software of Antenna Structure based on Visualization Technology.
    基于可视化的天线结构优化软件是天线结构综合设计平台的重要模块,本文为基于可视化的天线结构优化设计软件提供高效的、可靠的优化算法及其相应程序。
 

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