电磁悬挂系统气隙传感器故障的备选方案

K. Michail, A. Zolotas, R. Goodall
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引用次数: 5

摘要

提出了一种在气隙传感器故障情况下恢复电磁悬架性能的方法。所提出的控制方案是经典控制回路,卡尔曼估计和分析冗余(对于气隙信号)的组合。这样,冗余的气隙传感器对于系统的可靠运行就不是必需的了。当气隙传感器发生故障时,采用卡尔曼估计和分析冗余相结合的方法恢复所需的信号。使用遗传算法优化悬架的性能,并讨论了负载和操作气隙变化的一些初步鲁棒性问题。对该类悬架的仿真验证了所提出的传感器容差控制方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fallback options for airgap sensor fault of an electromagnetic suspension system
The paper presents a method to recover the performance of an electromagnetic suspension under faulty airgap sensor. The proposed control scheme is a combination of classical control loops, a Kalman Estimator and analytical redundancy (for the airgap signal). In this way redundant airgap sensors are not essential for reliable operation of this system. When the airgap sensor fails the required signal is recovered using a combination of a Kalman estimator and analytical redundancy. The performance of the suspension is optimised using genetic algorithms and some preliminary robustness issues to load and operating airgap variations are discussed. Simulations on a realistic model of such type of suspension illustrate the efficacy of the proposed sensor tolerant control method.
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