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Dynamic Optimization of Hydrostatic Supported Worktable System with Circular Oil Recess

机译:圆形油凹槽静压支撑工作系统的动态优化

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In this paper, optimal parameters in hydrostatic supported worktable system with circular oil recess are calculated. The optimal model is established in which the objective is to make natural frequency deviate from speeds of the rotary work axis, and the design variables are recess number, initial oil film thickness and recess radius. As the design variable vector includes both discrete and continuous components, two-phase optimization strategy is developed. Furthermore Fibonacci method is applied to deal with the problem of discrete variable, and response surface methodology is used to form an explicit expression between the objective expression and continuous variables. Then the optimal model is solved by gradient projection method and simplex method. As a result, numerical calculation of dynamic optimization with hydrostatic worktable system with circular recess shows that two-strategy optimization algorithm is stable and effectively.
机译:本文阐述了具有圆形油凹槽的静水压支撑的工作系统中的最佳参数。建立了最佳模型,其中目的是使自然频率偏离旋转工作轴的速度,并且设计变量是凹陷号,初始油膜厚度和凹陷半径。由于设计可变矢量包括离散和连续组件,因此开发了两相优化策略。此外,应用Fibonacci方法来处理离散变量的问题,并且使用响应表面方法来形成目标表达式和连续变量之间的显式表达。然后通过梯度投影方法和单纯x方法解决了最佳模型。结果,具有圆形凹陷的静液压工作台系统的动态优化的数值计算表明,双策略优化算法稳定有效。

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