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Structural Parameters Optimization of Lens Hood based on a Kind of Surrogate Model

机译:基于替代模型的镜头罩结构参数优化

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With the wide use of earth-based laser communication system, more and more engineers like to pursue the design oflightweight structure. Nowadays, engineers often firstly depend on the project experience to design the lens hood,then make analysis based on finite element method to verify its feasibility, but it costs too much time. The paperattempts to give a new optimization design method. Surrogate model are widely used in the fields of aerodynamicsparameters optimization, but barely used in design of optical structure. The paper makes an optimal design about lenshood with wide aperture based on surrogate model. First of all, the paper generates some samples by finite elementmethod; secondly, uses the samples to get the surrogate model by surface interpolation; then finds the optimalsolution by surrogate model and constraint conditions. The aperture of the lens hood in this paper is 450 mm. One endof the lens hood is attached to main structure, and the other end is free. Middle part of the lens hood is supported byrods which are made of carbon fiber. The optimization variables in this paper is the thickness of the lens hood and thelocation of the supports robs. The purpose of the optimization is to find the case that the weight is light anddisplacement of the free end is small. It will not let the miscellaneous light make a negative effect on incident oroutgoing path of light. In other words, it will ensure the quality of imagining or effect of detection. The appropriatesolution is found by the method proposed in this paper.
机译:随着地球的广泛使用,越来越多的工程师喜欢追求设计轻量级结构。如今,工程师通常首先取决于项目体验来设计镜片罩,然后基于有限元方法进行分析以验证其可行性,但它的时间太多了。本文尝试提供新的优化设计方法。代理模型广泛用于空气动力学领域参数优化,但勉强用于光学结构的设计。本文对镜头进行了最佳设计引擎盖基于代理模型的宽孔径。首先,纸张通过有限元产生一些样本方法;其次,使用样本通过表面插补来获得代理模型;然后找到最佳解决方案通过代理模型和约束条件。本文镜头罩的光圈为450毫米。一端镜头罩附着在主结构上,另一端是自由的。镜片罩的中间部分得到支持由碳纤维制成的棒。本文中的优化变量是镜片罩的厚度和支持的位置抢劫。优化的目的是找到重量是光的情况自由端的位移很小。它不会让杂项对事件产生负面影响光明的路径。换句话说,它将确保想象的质量或检测效果。适当的通过本文提出的方法发现了解决方案。

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