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Benchmarking Control Techniques Applied to Magnetic Bearings: Performance Assessment Criteria Analysis

机译:基准控制技术应用于磁轴承:性能评估标准分析

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Active Magnetic Bearings, due to a plant-intrinsic instability, require a control system for normal operation. Many control strategies have been proposed for the stabilization task, in some instances emphasizing market recognized control approaches, as PID controllers arranged in decentralized structures, and in other instances modern control approaches are envisaged, like LQR or H∞ structures. The objective of this paper is to present criteria to assess the performance of such proposed controllers, in order to establish a metric to compare different control schemes. The performance assessment criteria discussed include time domain as well as frequency domain approaches. Such criteria are applied to two control systems used in a laboratory prototype to stabilize a bearingless motor, being one based on PID controllers and the other being a LQR scheme. Discussion of the results is used to select a metric to be applied in the comparison of some controller algorithms, both centralized and decoupled, in order to determine which control law best suits such a bearingless motor.
机译:由于植物内在不稳定性,主动磁轴承需要控制系统进行正常操作。已经提出了许多控制策略为稳定任务,在一些情况下,强调市场公认的控制方法,因为在分散结构中排列的PID控制器,在其他情况下设想了现代控制方法,如LQR或H∞结构。本文的目的是呈现评估此类提出控制器的性能的标准,以建立比较不同的控制方案的指标。讨论的性能评估标准包括时域以及频域方法。这些标准应用于在实验室原型中使用的两个控制系统,以稳定无轴承电动机,是基于PID控制器的一个控制器,另一个是LQR方案。结果讨论用于在一些控制器算法的比较中选择要应用的度量,以便确定哪种控制法最适合这种无轴承电动机。

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