Heikkola Erkki, Miettinen Kaisa, Nieminen Paavo
Numerola Oy, P.O. Box 126, FI-40101 Jyväskylä, Finland.
Ultrasonics. 2006 Nov;44(4):368-80. doi: 10.1016/j.ultras.2006.04.004. Epub 2006 May 19.
The optimal design of an ultrasonic transducer is a multiobjective optimization problem since the final outcome needs to satisfy several conflicting criteria. Simulation tools are often used to avoid expensive and time-consuming experiments, but even simulations may be inefficient and lead to inadequate results if they are based only on trial and error. In this work, the interactive multiobjective optimization method NIMBUS is applied in designing a high-power ultrasonic transducer. The performance of the transducer is simulated with a finite element model, and three design goals are formulated as objective functions to be minimized. To find an appropriate compromise solution, additional preference information is needed from a decision maker, who in our case is an expert in transducer design. A realistic design problem is formulated, and an interactive solution process is described. Our findings demonstrate that interactive multiobjective optimization methods, combined with numerical simulation models, can efficiently help in finding new solution approaches and possibilities as well as new understanding of real-life problems as entirenesses. In this case, the decision maker found a solution that was better with respect to all three objectives than the conventional unoptimized design.
超声换能器的优化设计是一个多目标优化问题,因为最终结果需要满足多个相互冲突的标准。仿真工具常被用于避免昂贵且耗时的实验,但如果仅基于反复试验,即使是仿真也可能效率低下并导致结果不理想。在这项工作中,交互式多目标优化方法NIMBUS被应用于设计高功率超声换能器。用有限元模型对换能器的性能进行仿真,并将三个设计目标制定为要最小化的目标函数。为了找到合适的折衷解决方案,需要决策者提供额外的偏好信息,在我们的案例中,决策者是换能器设计方面的专家。提出了一个实际的设计问题,并描述了交互式求解过程。我们的研究结果表明,交互式多目标优化方法与数值仿真模型相结合,可以有效地帮助找到新的解决方案和可能性,以及对现实生活中的问题有全新的理解。在这种情况下,决策者找到了一个在所有三个目标方面都比传统的未优化设计更好的解决方案。