首页> 外文期刊>Mechatronics: The Science of Intelligent Machines >Design evolution of mechatronic systems through modeling, on-line monitoring, and evolutionary optimization
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Design evolution of mechatronic systems through modeling, on-line monitoring, and evolutionary optimization

机译:通过建模,在线监控和进化优化来设计机电系统的进化

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This paper presents a system framework to automate the design evolution of multi-domain engineering systems. The developed system integrates machine health monitoring with an expert system to monitor the performance of an existing mechatronic system and to take a decision as to whether and which part of the system a design improvement is necessary. A system model represented by Linear Graphs is evolved using genetic programming to obtain a design that optimally satisfies a specified level of performance. The developed approach allows exploration of the design space to find the optimum design solution in an automated manner. In order to control the arbitrary exploration of the design space, domain knowledge, expertise, and input from the machine health monitoring system are used. The design evolution algorithm is implemented using GPLAB, a MATLAB tool, and integrated with Simscape for modeling and simulation. The developed system is applied to redesign the electro-mechanical conveyor system of an industrial fish processing machine.
机译:本文提出了一个系统框架,可以自动进行多领域工程系统的设计演进。开发的系统将机器运行状况监视与专家系统集成在一起,以监视现有机电系统的性能,并就是否需要进行改进以及在系统的哪一部分进行设计做出决策。使用遗传编程来演化由线性图表示的系统模型,以获得最佳满足指定性能水平的设计。开发的方法允许探索设计空间以自动方式找到最佳设计解决方案。为了控制对设计空间的任意探索,使用了领域知识,专业知识以及来自机器运行状况监视系统的输入。设计演化算法是使用MATLAB工具GPLAB实现的,并与Simscape集成以进行建模和仿真。该开发的系统用于重新设计工业鱼加工机的机电输送系统。

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