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Combining the moment method with geometrical modelling by NURBS surfaces and Bezier patches

机译:将矩量法与NURBS曲面和Bezier面片的几何建模相结合

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Induced current distributions on conducting bodies of arbitrary shape modelled by NURBS (non uniform rational B-splines) surfaces are obtained by using a moment method approach to solve an electric field integral equation (EFIE). The NURBS surfaces are expanded in terms of Bezier patches by applying the Cox-de Boor transformation algorithm. This transformation is justified because Bezier patches are numerically more stable than NURBS surfaces. New basis functions have been developed which extend over pairs of Bezier patches. These basis functions can be considered as a generalization of "rooftop" functions. The method is applied to obtain RCS values of several objects modelled with NURBS surfaces. Good agreement with results from other methods is observed. The method is efficient and versatile because it uses geometrical modelling tools that are quite powerful.
机译:通过使用矩量法求解电场积分方程(EFIE),获得了由NURBS(非均匀有理B样条)表面建模的任意形状的导体上的感应电流分布。通过应用Cox-de Boor变换算法,根据Bezier面片扩展了NURBS曲面。这种变换是合理的,因为Bezier面块在数值上比NURBS曲面更稳定。已经开发了新的基本函数,这些函数扩展了成对的Bezier面片。这些基本功能可以看作是“屋顶”功能的概括。该方法适用于获得使用NURBS曲面建模的多个对象的RCS值。观察到与其他方法的结果吻合良好。该方法高效且通用,因为它使用了功能强大的几何建模工具。

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