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DEVELOPING BAYESIAN SURROGATES FOR USE IN PRELIMINARY DESIGN

机译:开发用于初步设计的贝叶斯替代品

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During the preliminary design stages, designers often have incomplete knowledge about the interactions among design parameters. We are developing a methodology that will enable designers to create models with levels of detail and accuracy that correspond to the current state of the design knowledge. The methodology uses Bayesian surrogate models that are updated sequentially in stages. Thus, designers can create a rough surrogate model when only a few data points are available and then refine the model as the design progresses and more information becomes available. These surrogates represent the system response when limited information is available and when few realizations of experiments or numerical simulations are possible. This paper presents a covariance-based approach for building surrogates in the preliminary design stages when bounds are not available a priori. We test the methodology using an analytical one-dimensional function and a heat transfer problem with an analytical solution, in order to obtain error measurements. We then illustrate the use of the methodology in a thermal design problem for wearable computers. In this problem, the underlying heat transfer phenomena make the system response non-intuitive. The surrogate model enables the designer to understand the relationships among the design parameters in order to specify a system with the desired behavior.
机译:在初步设计阶段,设计人员通常对设计参数之间的相互作用不了解。我们正在开发一种方法,使设计师能够创建具有与设计知识的当前状态相对应的详细程度和准确性的模型。该方法使用逐步进行顺序更新的贝叶斯代理模型。因此,当只有几个数据点可用时,设计人员可以创建一个粗糙的替代模型,然后随着设计的进行和更多信息的获得来完善模型。当可用的信息有限且无法实现实验或数值模拟时,这些替代代表系统响应。本文提出了一种基于协方差的方法,用于在无法事先确定边界的情况下在初步设计阶段构建代理。为了获得误差测量值,我们使用解析的一维函数和传热问题以及解析解对方法进行了测试。然后,我们说明该方法在可穿戴计算机的散热设计问题中的使用。在此问题中,潜在的传热现象使系统响应变得不直观。代理模型使设计人员能够了解设计参数之间的关系,以便指定具有所需行为的系统。

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