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System-Based and Concurrent Design of a Smart Mechatronic System Using the Concept of Mechatronic Design Quotient (MDQ)

机译:基于机电设计商(MDQ)概念的智能机电系统基于系统的并行设计

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A mechatronic system needs an integrated, concurrent, and system-based design approach due to the existence of interactions among its subsystems, and also the existence of interactions between the criteria involved in a realistic evaluation of a mechatronic product. This paper presents a systematic methodology for a detailed mechatronic design based on a mechatronic design quotient (MDQ). MDQ is a multicriteria index, reflecting a system-based evaluation of a mechatronic design, which is calculated using soft computing techniques, thereby accommodating interactions between criteria and human experience. A niching genetic algorithm is utilized to explore the huge search space raised due to concurrent and integrated design approach, with the aim to find the elite representatives of different possible configurations. To demonstrate the method, it is applied to an industrial fish cutting machine called the Iron Butcher—an electromechanical system that falls into the class of mixed or multidomain systems.
机译:由于机电子系统之间存在相互作用,并且在机电产品的实际评估中所涉及的标准之间也存在相互作用,因此机电系统需要一种集成,并发和基于系统的设计方法。本文提出了一种基于机电设计商(MDQ)的详细机电设计的系统方法。 MDQ是一个多标准索引,反映了机电设计的基于系统的评估,该评估是使用软计算技术计算得出的,从而适应了标准与人类经验之间的相互作用。利用适当的遗传算法来探索由于并发和集成设计方法而引起的巨大搜索空间,目的是寻找不同可能配置的精英代表。为了演示该方法,将其应用于称为Iron Butcher的工业鱼切割机-一种机电系统,属于混合域或多域系统。

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