Observer-based bilinear control of first-order hyperbolic PDEs: Application to the solar collector

Sarah Mechhoud, T. Laleg‐Kirati
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引用次数: 4

Abstract

In this paper, we investigate the problem of bilinear control of a solar collector plant using the available boundary and solar irradiance measurements. The solar collector is described by a first-order 1D hyperbolic partial differential equation where the pump volumetric flow rate acts as the plant control input. By combining a boundary state observer and an internal energy-based control law, a nonlinear observer based feedback controller is proposed. With a feed-forward control term, the effect of the solar radiation is cancelled. Using the Lyapunov approach we prove that the proposed control guarantees the global exponential stability of both the plant and the tracking error. Simulation results are provided to illustrate the performance of the proposed method.
基于观测器的一阶双曲偏微分方程双线性控制:在太阳能集热器中的应用
在本文中,我们研究了利用可用边界和太阳辐照度测量的太阳能集热器的双线性控制问题。太阳能集热器由一阶一维双曲偏微分方程描述,其中泵体积流量作为电厂控制输入。将边界状态观测器与基于内能的控制律相结合,提出了一种基于观测器的非线性反馈控制器。采用前馈控制项,消除了太阳辐射的影响。利用Lyapunov方法证明了所提出的控制能保证被控对象的全局指数稳定性和跟踪误差。仿真结果验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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