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VARIABLE FIDELITY MODELING AS APPLIED TO TRAJECTORY OPTIMIZATION FOR A HYDRAULIC BACKHOE

机译:变量保真度建模在液压反铲弹道优化中的应用

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Modeling, simulation, and optimization play vital roles throughout the engineering design process; however, in many design disciplines the cost of simulation is high, and designers are faced with a tradeoff between the number of alternatives that can be evaluated and the accuracy with which they are evaluated. In this paper, a methodology is presented for using models of various levels of fidelity during the optimization process. The intent is to use inexpensive, low-fidelity models with limited accuracy to recognize poor design alternatives and reserve the high-fidelity, accurate, but also expensive models only to characterize the best alternatives. Specifically, by setting a user-defined performance threshold, the optimizer can explore the design space using a low-fidelity model by default, and switch to a higher fidelity model only if the performance threshold is attained. In this manner, the high fidelity model is used only to discern the best solution from the set of good solutions, so computational resources are conserved until the optimizer is close to the solution. This makes the optimization process more efficient without sacrificing the quality of the solution. The method is illustrated by optimizing the trajectory of a hydraulic backhoe. To characterize the robustness and efficiency of the method, a design space exploration is performed using both the low and high fidelity models, and the optimization problem is solved multiple times using the variable fidelity framework.
机译:建模,仿真和优化在整个工程设计过程中都起着至关重要的作用。然而,在许多设计学科中,仿真的成本很高,设计人员面临着可以评估的替代方案数量与评估精度之间的权衡。在本文中,提出了一种在优化过程中使用各种保真度模型的方法。目的是使用精度有限的廉价,低保真度模型来识别较差的设计替代方案,并保留高保真度,精确度但昂贵的模型,以仅表征最佳替代方案。具体来说,通过设置用户定义的性能阈值,优化器可以默认使用低保真度模型探索设计空间,并且仅在达到性能阈值时才切换到更高保真度模型。以这种方式,高保真度模型仅用于从一组好的解决方案中识别出最佳解决方案,因此可以节省计算资源,直到优化程序接近该解决方案为止。这使优化过程更加有效,而不会牺牲解决方案的质量。通过优化液压反铲的轨迹来说明该方法。为了表征该方法的鲁棒性和效率,使用低保真度模型和高保真度模型进行设计空间探索,并使用可变保真度框架多次解决优化问题。

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