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Closed-loop identification of multi-axis active magnetic bearing systems based on decentralized and decoupling control
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Closed-loop identification of multi-axis active magnetic bearing systems based on decentralized and decoupling control

T.-J. Yeh, Chien-Chih HuangChow-Shing Toh
Mechatronics, 卷.90, 102933
04/2023

摘要

Closed-loop identification Multi-axis magnetic bearing systems Positive-real condition Recursive estimation Control and Systems Engineering Mechanical Engineering Computer Science Applications Electrical and Electronic Engineering
In response to the open-loop instability of magnetic bearing systems, this paper develops a closed-loop identification method to obtain an accurate plant model for controller design. The identification method is based on a decentralized and decoupling control architecture, which allows the decoupling of the multi-input-multi-output (MIMO) system into two single-input-single-output (SISO) systems for simplifying the identification process. The identification uses a pseudo-random binary sequence as the excitation signal. A parameterized model is obtained through a parameter estimation algorithm based on the output error model. To ensure that the model prediction error can converge during the computation process, a filter is incorporated into the estimation algorithm. The filter can be synthesized systematically by solving a set of linear matrix inequalities. The performance of the proposed closed-loop identification method is firstly verified by simulations. Then it is implemented on a five-axis magnetic bearing platform and the parameterized model obtained from the identification is compared to the experimental frequency response.

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