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A Robust Data-Driven Controller Design Methodology With Applications to Particle Accelerator Power Converters

机译:稳健的数据驱动控制器设计方法,应用于粒子加速器功率转换器

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摘要

A new data-driven approach using the frequency response function (FRF) of a system is proposed for designing robust-fixed structure digital controllers for particle accelerators' power converters. This design method ensures that the dynamics of a system are captured and avoid the problem of unmodeled dynamics associated with parametric models. The H-infinity robust performance condition can be represented by a set of convex constraints with respect to the parameters of a two degree of freedom RST controller. This controller is robust with respect to the frequency-dependent uncertainties of the FRF. A convex optimization algorithm is implemented to obtain the controller parameters. The effectiveness of the method is illustrated by considering two case studies that require robust controllers for achieving the desired performance.
机译:提出了一种使用系统频率响应函数(FRF)的数据驱动新方法,用于设计用于粒子加速器功率转换器的稳固固定结构数字控制器。这种设计方法可确保捕获系统的动力学,并避免与参数模型关联的未建模动力学问题。 H无限鲁棒性能条件可以由针对两个自由度RST控制器的参数的一组凸约束表示。该控制器对于FRF的频率相关不确定性具有鲁棒性。实施凸优化算法以获得控制器参数。通过考虑两个案例研究来说明该方法的有效性,这两个案例研究需要鲁棒的控制器才能实现所需的性能。

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