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首页> 外文期刊>SIAM Journal on Numerical Analysis >Ordered upwind methods for static Hamilton-Jacobi equations: Theory and algorithms
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Ordered upwind methods for static Hamilton-Jacobi equations: Theory and algorithms

机译:静态汉密尔顿-雅各比方程的有序迎风方法:理论和算法

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摘要

We develop a family of fast methods for approximating the solutions to a wide class of static Hamilton-Jacobi PDEs; these fast methods include both semi-Lagrangian and fully Eulerian versions. Numerical solutions to these problems are typically obtained by solving large systems of coupled nonlinear discretized equations. Our techniques, which we refer to as "Ordered Upwind Methods" (OUMs), use partial information about the characteristic directions to decouple these nonlinear systems, greatly reducing the computational labor. Our techniques are considered in the context of control-theoretic and front-propagation problems. We begin by discussing existing OUMs, focusing on those designed for isotropic problems. We then introduce a new class of OUMs which decouple systems for general ( anisotropic) problems. We prove convergence of one such scheme to the viscosity solution of the corresponding Hamilton-Jacobi PDE. Next, we introduce a set of finite-differences methods based on an analysis of the role played by anisotropy in the context of front propagation and optimal trajectory problems. The performance of the methods is analyzed, and computational experiments are performed using test problems from computational geometry and seismology. [References: 46]
机译:我们开发了一系列快速方法,用于近似各种静态Hamilton-Jacobi PDE的解。这些快速方法包括半拉格朗日和完全欧拉两种版本。这些问题的数值解决方案通常是通过求解耦合非线性离散方程的大型系统来获得的。我们的技术(称为“有序逆风方法”(OUM))使用有关特征方向的部分信息来解耦这些非线性系统,从而大大减少了计算量。我们的技术是在控制理论和前向传播问题的背景下考虑的。我们首先讨论现有的OUM,重点是针对各向同性问题而设计的OUM。然后,我们介绍一类新的OUM,它们可以将系统解耦为一般(各向异性)问题。我们证明了一种这样的方案对相应的Hamilton-Jacobi PDE粘度溶液的收敛性。接下来,我们在分析各向异性在前向传播和最佳轨迹问题的背景下所起的作用的基础上,介绍了一组有限差分方法。分析了这些方法的性能,并使用来自计算几何学和地震学的测试问题进行了计算实验。 [参考:46]

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