边界控制系统的离散输出观测器

IF 1.6 4区 计算机科学 Q3 AUTOMATION & CONTROL SYSTEMS
Z. Emirsajlow
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引用次数: 0

摘要

摘要研究了将线性无限维控制对象建模为抽象边界输入/输出控制系统的输出观测器设计问题。众所周知,这样的模型导致具有无界控制(输入)和观察(输出)算子的等效状态空间描述。对于这类无限维系统,我们使用Cayley变换将复杂的无限维连续时间模型近似为所有涉及算子有界的离散无限维模型。这大大简化了观察者设计过程的数学方面。众所周知,Cayley变换的本质特征是它保留了控制系统模型的各种系统理论性质,这在分析中可能是有用的。作为说明,我们考虑了一个为一维热方程设计输出观测器的例子,该方程具有诺伊曼边界条件下的测量控制(输入),狄利克雷边界条件下的测量输出和区域内固定点的未测量输出。数值仿真结果表明,从离散时间观测器得到的插值连续时间信号可以成功地用于跟踪连续时间对象的输出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Discrete-time output observers for boundary control systems
Abstract The paper studies the output observer design problem for a linear infinite-dimensional control plant modelled as an abstract boundary input/output control system. It is known that such models lead to an equivalent state space description with unbounded control (input) and observation (output) operators. For this class of infinite-dimensional systems we use the Cayley transform to approximate the sophisticated infinite-dimensional continuous-time model by a discrete-time infinite-dimensional one with all involved operators bounded. This significantly simplifies mathematical aspects of the observer design procedure. As is well known, the essential feature of the Cayley transform is that it preserves various system theoretic properties of the control system model, which may be useful in analysis. As an illustration, we consider an example of designing an output observer for the one-dimensional heat equation with measured controls (inputs) in the Neumann boundary conditions, measured outputs in the Dirichlet boundary conditions and an unmeasured output at a fixed point within the domain. Numerical simulations of this example show that the interpolated continuous-time signal, obtained from the discrete-time observer, can be successfully used for tracking the continuous-time plant output.
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来源期刊
CiteScore
4.10
自引率
21.10%
发文量
0
审稿时长
4.2 months
期刊介绍: The International Journal of Applied Mathematics and Computer Science is a quarterly published in Poland since 1991 by the University of Zielona Góra in partnership with De Gruyter Poland (Sciendo) and Lubuskie Scientific Society, under the auspices of the Committee on Automatic Control and Robotics of the Polish Academy of Sciences. The journal strives to meet the demand for the presentation of interdisciplinary research in various fields related to control theory, applied mathematics, scientific computing and computer science. In particular, it publishes high quality original research results in the following areas: -modern control theory and practice- artificial intelligence methods and their applications- applied mathematics and mathematical optimisation techniques- mathematical methods in engineering, computer science, and biology.
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