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Optimum discrete design of steel tower structures using optics inspired optimization method

机译:基于光学启发式优化方法的钢塔结构最佳离散设计

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摘要

This paper presents an optics inspired optimization (OIO) method for optimum design of steel tower structures with discrete variables. Inspired by the optical characteristics of concave and convex mirrors, OIO tries to solve optimization problem. In OIO, the surface of the objective function to be minimized is considered as a reflecting wavy mirror consisting of peaks and valleys. To generate a new solution (artificial image point) from a given solution (artificial object/light point) in the search space, it is assumed that the artificial ray glittered from the artificial light point is reflected back artificially by the function surface in which each peak is considered as a convex mirror and each valleys is treated as a concave mirror. Then, the artificial image point is formed by the theory of optics in Physics, and a new solution is generated in the search space accordingly. Numerical experiments have been conducted on 4 benchmark design examples with discrete variables, and the results obtained by OIO are compared to those reported in the literature. The results show that OIO can produce high quality solutions and show a relatively fast convergence rate.
机译:本文提出了一种光学启发优化(OIO)方法,用于具有离散变量的钢塔结构的优化设计。受到凹凸镜的光学特性的启发,OIO试图解决优化问题。在OIO中,将要最小化的目标函数的表面视为由峰和谷组成的反射波镜。为了从搜索空间中的给定解(人造物体/光点)生成新解(人造像点),假设从人造光点发出的人造光线被功能面人工反射回去,峰被视为凸面镜,每个波谷被视为凹面镜。然后,利用物理学中的光学理论形成了人工像点,并在搜索空间中产生了新的解。已经对4个具有离散变量的基准设计实例进行了数值实验,并将OIO获得的结果与文献报道的结果进行了比较。结果表明,OIO可以产生高质量的解决方案,并且显示出相对较快的收敛速度。

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