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Geodesic Computation on NURBS Surfaces for UTD Analysis

机译:用于UTD分析的NURBS曲面上的测地线计算

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One of the great challenges in calculating the uniform geometrical theory of diffraction (UTD) surface diffracted fields on NURBS surfaces is due to the difficulty in determining the geodesic paths along which the creeping waves propagate. On one single parametric surface patch, the geodesic computation needs to be performed by solving the geodesic equations numerically. Furthermore, realistic objects are generally modeled as the union of several connected NURBS patches. Due to the discontinuity of parameter between patches, it is more complicated to compute geodesic paths on several connected patches than on one single patch. Therefore, this letter develops an adjustable modeling scheme that can adjust the parameterizations of several connected patches to support the geodesic computation throughout these patches. Based on the geodesic computation, the UTD diffractions by NURBS models can be analyzed.
机译:计算NURBS表面上均匀的衍射(UTD)表面衍射场的统一几何理论的一大挑战是由于难以确定蠕变波沿其传播的测地路径。在一个单一的参数曲面补丁上,需要通过数值解测地线方程来执行测地线计算。此外,通常将现实对象建模为几个连接的NURBS面片的并集。由于面片之间参数的不连续性,在多个连接的面片上计算测地线路径比在一个面片上要复杂得多。因此,这封信提出了一种可调整的建模方案,该方案可以调整几个连接的面片的参数化,以支持整个面片的测地线计算。基于测地线计算,可以分析NURBS模型的UTD衍射。

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