Intelligent Design of Hydraulic Manifold Block Based on Genetic Algorithm

Bi Yongmin, Zeng Jianbin, Chen Qifan, L. Mengru
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Abstract

The problem about how to arrange the valve block and how to connect the hole for the hydraulic manifold block has the characteristics of high complexity and strong coupling, which is the key to the hydraulic manifold block design. In this article, a genetic algorithm is designed to quickly find the global optimal solution of the problem. The basic mathematical models of the hydraulic manifold block are established, including the minimum wall thickness check model, the shape interference check model and the connection model of holes. In order to process constraints, a concept of taboos is defined. The fitness function of the genetic algorithm is calculated based on the mathematical models and the taboo value. The feasibility of the genetic algorithm is evaluated by designing a hydraulic manifold block of the left front leg of the spider-type aerial work vehicle.
基于遗传算法的液压集成块智能设计
液压集成块的阀块布置和孔的连接问题具有高复杂性和强耦合性的特点,是液压集成块设计的关键。本文设计了一种遗传算法来快速找到问题的全局最优解。建立了液压集成块的基本数学模型,包括最小壁厚校核模型、形状干涉校核模型和孔的连接模型。为了处理约束,定义了禁忌的概念。基于数学模型和禁忌值计算遗传算法的适应度函数。通过对蜘蛛式高空作业车左前腿液压集成块的设计,对遗传算法的可行性进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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