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首页> 外文期刊>Mechatronics, IEEE/ASME Transactions on >Niching Genetic Scheme With Bond Graphs for Topology and Parameter Optimization of a Mechatronic System
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Niching Genetic Scheme With Bond Graphs for Topology and Parameter Optimization of a Mechatronic System

机译:结合图的Niching遗传方案用于机电系统的拓扑和参数优化

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摘要

This paper presents a novel multimodal evolutionary optimization algorithm for the complex problem of concurrent and integrated design of a mechatronic system, with the objective of realizing the best topology and the best parameters from a multicriteria viewpoint and with different preferences. The associated search space can be large and complex due to the existence of different classes of configurations, possible topologies, and the parameter values of the elements. The proposed algorithm efficiently explores the search space to find several elite configurations for different preferences, with more detailed competition by incorporating the domain knowledge of experts and considering some criteria that are not included in the course of regular evolutionary optimization. The developed approach consists of a two-loop optimization. For each topology, a genetic algorithm-based optimization is performed to find an elite representative of the topology. The elites will compete with each other to become the best design. A strategy of restricted competition selection is employed in the competition of topologies, with the aim of finding alternative elites from which the one that best satisfies the customer preference may be chosen. The designer may incorporate a higher level competition between elites in order to obtain the global optimum.
机译:本文针对机电系统并发和集成设计的复杂问题,提出了一种新颖的多峰进化优化算法,其目的是从多准则的角度和不同的偏好中实现最佳拓扑和最佳参数。由于存在不同类别的配置,可能的拓扑以及元素的参数值,因此关联的搜索空间可能很大且很复杂。所提出的算法通过结合专家的领域知识并考虑一些不包括在常规进化优化过程中的准则,从而有效地探索了搜索空间以找到针对不同偏好的几种精英配置,并进行了更详细的竞争。所开发的方法包括两个循环的优化。对于每个拓扑,都执行基于遗传算法的优化,以找到代表该拓扑的精英。精英们将相互竞争,成为最佳设计。在拓扑结构竞争中采用了一种限制竞争选择的策略,目的是寻找可以从中选择最能满足客户偏好的精英。设计人员可以在精英之间进行更高级别的竞争,以获得全局最优。

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