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Internal model-based controller design using measured costs and gradients

机译:基于内部模型的控制器设计,使用测得的成本和梯度

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摘要

We consider the problem of tuning a closed-loop controller for a continuous-time, linear, lumped, exponentially stable plant using measurements. With the aim of reducing the amount of computation and the effect of modelling error, a two-step tuning method is proposed based on an internal model controller structure. The first step solves a controller design problem formulated as a sequence of convex optimization problems in which the cost, constraint functions and their gradients are evaluated directly from plant measurements. The designer comfortably specifies the desired performance by adjusting the weights of a cost function composed of time and frequency domain performance functionals. Using plant frequency response data, the second step solves a convex optimization problem for a plant model required to implement the controller. Model error bounds ensure closed-loop stability. An example illustrates the design procedure. [References: 15]
机译:我们考虑了使用测量为连续时间,线性,集总,指数稳定的工厂调整闭环控制器的问题。为了减少计算量和建模误差的影响,提出了一种基于内部模型控制器结构的两步整定方法。第一步是将控制器设计问题解决为一系列凸优化问题,其中直接从工厂测量中评估成本,约束函数及其梯度。设计者可以通过调整由时域和频域性能功能组成的成本函数的权重,舒适地指定所需的性能。使用工厂频率响应数据,第二步解决了实现控制器所需的工厂模型的凸优化问题。模型误差范围可确保闭环稳定性。一个例子说明了设计过程。 [参考:15]

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