We study output tracking and disturbance rejection for an Euler-Bernoulli beam with Kelvin-Voigt damping. The system has distributed control and pointwise observation. As our main result we design a finite-dimensional low-order internal model based controller that is based on a spectral Galerkin method and model reduction by Balanced Truncation. The performance of the designed controller is demonstrated with numerical simulations and compared to the performance of a low-gain internal model based controller.
翻译:我们用 Kelvin-Voigt 拖动器研究Euler-Bernoulli 光束的输出跟踪和扰动拒绝。 系统分布了控制和点对点观测。 作为我们的主要结果, 我们设计了一个以光谱Galerkin 法为基础的、以光谱Galerkin 法为基础的、以平衡计速减少模型为基础的、以有限维度低级内部控制器为主的内部控制器。 设计的控制器的性能通过数字模拟和与以低增量模型为基础的内部控制器的性能进行比较来演示。