基于改进 NSGA-Ⅲ的电磁超声换能器多目标优化
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TB552 TH164

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国家自然科学基金面上项目(51977148,51577132)资助


Multi-objective optimization of electromagnetic acoustic transducer based on the improved NSGA-Ⅲ algorithm
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    摘要:

    电磁超声换能器(EMAT)的设计与优化是一个变量多、分析复杂和优化难度大的多目标优化问题。 通过建立的电磁超 声换能器电磁-力-声有限元模型,得到了洛伦兹力、磁致伸缩效应、感应电流密度和振动位移等优化目标的样本集,构建了多支 持向量机的代理模型。 提出一种基于参考点和拥挤度相结合的改进 NSGA-Ⅲ优化方法,对优化目标进行优化设计,并通过多指 标加权灰靶决策模型从 Pareto 解集中选择最满意的优化方案。 将计算结果与其他优化方法进行对比,改进 NSGA-Ⅲ算法在复 杂多目标问题中有更好的计算效果。 通过实验验证了优化过程的合理性和优化结果的准确性。 结果表明,优化后电磁超声换 能器检测信号提升约 25% ,有效提高换能效率,为电磁超声换能器参数优化提供了一种新思路。

    Abstract:

    The design and optimization of electromagnetic ultrasonic transducer (EMAT) is a multi-objective optimization problem, which has many variables, complicated analysis and great difficulty in optimization. By formulating the electromagnetic force acoustic finite element model of the electromagnetic ultrasonic transducer, the sample sets of the optimal targets such as Lorentz force, magnetostrictive effect, induced current density and vibration displacement can be achieved. In this way, the agent model of the multi-support vector machine is established. An improved NSGA-Ⅲ multi-objective optimization method based on the combination of reference point and congestion degree is proposed. The optimization design is implemented on the optimization target, and the most satisfactory optimization scheme is selected from Pareto solution set through the multi-index weighted grey target decision model. Compared with other optimization methods, the improved NSGA-Ⅲ algorithm is more effective for solving complex multi-objective problems. The rationality of the optimization process and the accuracy of the optimization results are evaluated by experiments. Results show that the detection signal of the electromagnetic ultrasonic transducer is increased by about 25% after optimization, which effectively improves the energy exchange efficiency. It provides a new way for the parameter optimization of the electromagnetic ultrasonic transducer.

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金 亮,冯 时,杨庆新,曹佳豪.基于改进 NSGA-Ⅲ的电磁超声换能器多目标优化[J].仪器仪表学报,2021,(1):49-59

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  • 在线发布日期: 2023-06-28
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