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A parallel simulated annealing algorithm based on functional feature tree modeling for 3D engineering layout design

机译:基于功能特征树建模的并行模拟退火算法在3D工程布局设计中的应用

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摘要

Computation complexity and modeling complexity are primary clog in 3D engineering layout design. In this paper, a parallel simulated annealing based on multiple Markov chains is employed to deal with the computation complexity. The algorithm increases computing efficiency by allocating computation burden to networked computers. To cope with the modeling complexity, machine components and space limitation are modeled by a hierarchical, feature-based modeling method - the functional feature tree modeling method. And multiple complex design constraints can be described by the representation. In order to support whole layout design solving process, a Computer Aided Layout Design System is introduced briefly. This system not only implements the algorithm and the components representation, but also integrates some other subsystems as evaluation system, constrains editor etc. The methods are demonstrated through a real engineering application, a vehicle engine compartment layout design.
机译:计算复杂度和建模复杂度是3D工程布局设计中的主要障碍。本文采用基于多个马尔可夫链的并行模拟退火算法来处理计算复杂性。该算法通过将计算负担分配给联网计算机来提高计算效率。为了应付建模复杂性,通过基于特征的分层建模方法-功能特征树建模方法对机器组件和空间限制进行​​了建模。表示可以描述多个复杂的设计约束。为了支持整个布局设计求解过程,简要介绍了计算机辅助布局设计系统。该系统不仅实现算法和组件表示,还集成了评估系统,约束编辑器等其他子系统。这些方法通过实际的工程应用,车辆发动机室布局设计进行了演示。

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