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Structural topology optimization of high-voltage transmission tower with discrete variables

机译:离散变量的高压输电塔结构拓扑优化

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摘要

In order to solve the structural optimization problem of long-span transmission tower, topology combination optimization (TCO) method and layer combination optimization (LCO) method based on discrete variables are presented, respectively. An adaptive genetic algorithm (AGA) is proposed as optimization algorithm. Four methods: cross-section size optimization (CSSO) method, shape combination optimization (SCO) method, the TCO method and the LCO method, are utilized to optimize the transmission steel tower, respectively. The topology optimization rules are presented for the TCO method, and the layering optimization rules are presented for the LCO method. A high-voltage steel tower is analyzed as a numerical example to illustrate the performance of the proposed methods. The simulation results demonstrate that the calculated results of both the proposed TCO method and the LCO method are obviously better than those of the CSSO method and the SCO method.
机译:为了解决大跨度输电塔的结构优化问题,分别提出了基于离散变量的拓扑组合优化(TCO)方法和层组合优化(LCO)方法。提出了一种自适应遗传算法(AGA)作为优化算法。分别采用截面尺寸优化(CSSO)方法,形状组合优化(SCO)方法,TCO方法和LCO方法四种方法来优化输电钢塔。为TCO方法提出了拓扑优化规则,为LCO方法提出了分层优化规则。以一个高压钢塔为例,分析了该方法的性能。仿真结果表明,所提出的TCO方法和LCO方法的计算结果均明显优于CSSO方法和SCO方法。

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