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首页> 外文期刊>International Journal of Modern Physics, C. Physics and Computers >Resolving controls for exact and approximate controllability of viscous Burgers' equation: The Green's function approach
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Resolving controls for exact and approximate controllability of viscous Burgers' equation: The Green's function approach

机译:解决粘性汉堡等方程的精确和近似可控性的控制:绿色的功能方法

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摘要

In this paper, we consider a nonlinear control problem for one-dimensional viscous Burgers' equation associated with a controlled linear heat equation by means of the Hopf-Cole transformation. The control is carried out by the time-dependent intensity of a distributed heat source influencing the heat equation. The set of admissible controls consists of compactly supported L-infinity functions. Using the Green's function approach, we analyze the possibilities of exact and approximate establishment of a given terminal state for the associated nonlinear Burgers' equation within a desired amount of time. It is shown that the exact controllability of the associated Burgers' equation and the heat equation are equivalent. Furthermore, suffcient conditions for the approximate controllability are derived. The set of resolving controls is constructed in both cases. The determination of the resolving controls providing exact controllability is reduced to an infinite-dimensional system of linear algebraic equations. By means of the heuristic method of resolving control determination, parametric hierarchies of solutions providing approximate controllability are constructed. The results of a numerical simulation supporting the theoretical derivations are discussed.
机译:在本文中,我们考虑通过HOPF-COLE转换与受控线性热方程相关的一维粘性汉堡的等式的非线性控制问题。通过影响热方程的分布式热源的时间依赖性强度进行控制。该组可接受控制包括紧凑支持的L-Infinity功能。使用绿色的功能方法,我们在期望的时间内分析了所需的非线性汉堡的给定终端状态的精确和近似建立的可能性。结果表明,相关的汉堡方程和热方程的确切可控性是等同的。此外,推导出近似可控性的休止条件。这两种解决控件都是在两种情况下构建的。确定提供精确可控性的分辨控制的确定减少到线性代数方程的无限尺寸系统。通过解决控制确定的启发式方法,构建提供近似可控性的解决方案的参数层次结构。讨论了支持理论推导的数值模拟的结果。

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