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HDD SLIDER AIR BEARING DESIGN OPTIMIZATION USING A SURROGATE MODEL

机译:HDD滑块空气轴承设计优化使用代理模型

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This report addresses a new optimization method in which the DIRECT algorithm is used in conjunction with a surrogate model. The DIRECT algorithm itself can find the global optimum with a high convergence rate. However the convergence rate can be much improved by coupling DIRECT with a surrogate model. The surrogate model known as the Kriging model is used in this research. It is determined by using sampling points generated by the DIRECT algorithm. This model expresses the shape of a hyper surface approximation of the cost function over the entire search space. Finding the optimum point on this hyper surface is very fast because it is not necessary to solve the time consuming air bearing equations. By using this optimum candidate as one of the DIRECT sampling points, we can eliminate many cost function evaluations. To illustrate the power of this approach we first present some simple optimization examples using known difficult functions. Then we determine the optimum design of a slider with 5nm flying height (FH) starting with a design that has a 7nm FH.
机译:该报告解决了一种新的优化方法,其中直接算法与代理模型结合使用。直接算法本身可以找到具有高收敛速度的全局最佳选择。然而,通过用替代模型耦合直接来改善收敛速率。称为Kriging模型的替代模型用于本研究。它通过使用直接算法生成的采样点来确定。该模型表达了在整个搜索空间上的成本函数的超表面近似的形状。在这个超表面上找到最佳点是非常快的,因为没有必要解决耗时的空气轴承方程。通过使用该最佳候选者作为一个直接采样点之一,我们可以消除许多成本函数的评估。为了说明这种方法的力量,我们首先使用已知的困难功能介绍一些简单的优化示例。然后,我们确定具有5nm飞行高度(FH)的滑块的最佳设计,以7nm fh的设计。

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