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- W3182115211 abstract "We propose a new approach for the accurate numerical computation of high-order derivatives along geodesic curves on surfaces. The method is based on the observation that for geodesics the Darboux frame and the Frenet–Serret frame are locally equal up to a constant rotation around the tangent. It computes derivatives of arbitrary order from the result of the numerical method employed for computing the geodesic. Since it does not rely on finite difference approximations, no additional discretization errors are introduced. Applications of the method include motion planning of autonomous vehicles and geometric modeling with developable surfaces. • We introduce a novel method for the accurate numerical computation of the high-order derivatives of geodesic curves on surfaces. • Unlike finite difference approaches, we do not introduce further discretization errors when computing derivatives of arbitrary order. • The problem of computing the high-order derivatives is reduced to a linear system. • The method can be integrated into methods for the design of developable surfaces and motion planning of autonomous vehicles." @default.
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- W3182115211 date "2021-11-01" @default.
- W3182115211 modified "2023-10-09" @default.
- W3182115211 title "Accurate High-Order Derivatives of Geodesic Paths on Smooth Surfaces" @default.
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- W3182115211 doi "https://doi.org/10.1016/j.cad.2021.103082" @default.
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