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Investigation on the Convergence of the Genetic Algorithm of an Aerodynamic Feeding System Due to the Enlargement of the Solution Space

机译:由于溶液空间扩大而导致空气动力喂养系统遗传算法的收敛性研究

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To meet the demands for flexible assembly technology, an aerodynamic feeding system has been developed. The system autonomously finds the optimal configuration of four parameters - two angles of inclination, nozzle pressure and component speed - using a genetic algorithm, which has been presented in earlier work. To increase the flexibility of the feeding system, an actuator was implemented, that enables the variation of the nozzle position orthogonally to the moving direction of the components. This paper investigates the effects of the more flexible flow against the components on their behavior when passing the nozzle. Additionally, the nozzle position was implemented into the genetic algorithm as a fifth parameter. Therefore, the impact of the enlargement of the solution space of the genetic algorithm due to the implementation of a fifth parameter is investigated in this paper as well.
机译:为满足灵活装配技术的需求,已经开发了一种空气动力馈送系统。 该系统自主地找到了四个参数的最佳配置 - 使用遗传算法的倾斜,喷嘴压力和组件速度的两个角度,这已经在早期的工作中呈现。 为了提高馈送系统的柔性,实现了致动器,使得使喷嘴位置正交变为部件的移动方向。 本文调查了在通过喷嘴时对其行为上的更灵活的流量对组件的影响。 另外,喷嘴位置被实现为遗传算法作为第五参数。 因此,本文还研究了由于第五参数的实施而扩大遗传算法溶液空间的影响。

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