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首页> 外文期刊>SIAM Journal on Numerical Analysis >On the quadratic finite element approximation of one-dimensional waves: Propagation, observation, and control
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On the quadratic finite element approximation of one-dimensional waves: Propagation, observation, and control

机译:关于一维波的二次有限元逼近:传播,观测和控制

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We study the propagation, observation, and control properties of the quadratic P_ 2-classical finite element semidiscretization of the one-dimensional wave equation on a bounded interval. A careful Fourier analysis of the discrete wave dynamics reveals two different branches in the spectrum: the acoustic one, of physical nature, and the optic one, related to the perturbations that this second-order finite element approximation introduces with respect to the P_ 1 one. On both modes there are high frequencies with vanishing group velocity as the mesh size tends to zero. This shows that the classical property of continuous waves of being observable from the boundary fails to be uniform for this discretization scheme. As a consequence of this, the controls of the discrete waves may blow up as the mesh size tends to zero. To remedy these high-frequency pathologies, we design filtering mechanisms based on the Fourier truncation method or on a bi-grid algorithm, for which one can recover the uniformity of the observability constant in a finite time and, consequently, the possibility to control with uniformly bounded L~ 2-controls appropriate projections of the solutions. This also allow us to show that, by relaxing the control requirement, the controls are uniformly bounded and converge to the continuous ones as the mesh size tends to zero.
机译:我们研究一维波动方程在有界区间上的二次P_ 2-经典有限元半离散化的传播,观测和控制性质。对离散波动力学的仔细傅立叶分析揭示了频谱中的两个不同分支:与物理性质有关的声学分支与与光学性质有关的光学分支,这种二阶有限元逼近相对于P_1引入了扰动。 。在这两种模式下,随着网格尺寸趋于零,高频具有消失的群速度。这表明,对于该离散化方案,从边界可观察到的连续波的经典特性不能统一。结果,随着网格大小趋于零,离散波的控制可能会爆炸。为了解决这些高频病理问题,我们设计了基于傅里叶截断法或双网格算法的滤波机制,为此,人们可以在有限的时间内恢复可观测性常数的均匀性,从而有可能通过均匀有界L〜2控制解的适当投影。这也使我们能够表明,通过放宽控件的要求,控件可以均匀地定界并随着网格尺寸趋于零而收敛到连续的控件。

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