故障检测,隔离和恢复使用样条工具和差动平整度与应用于磁传动系统

Fajar Suryawan, J. De Dona, M. Seron
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引用次数: 9

摘要

本文利用b样条和微分平坦度的概念讨论了连续时间系统的故障检测和隔离问题。这个想法是,从系统的平坦输出(直接从测量或从观察者获得),我们代数地产生所有其他测量信号,包括输入。然后比较相应的信号。在标称条件下,从平坦输出得到的测量信号和对应信号在噪声和滤波器带宽范围内是相似的。在故障的发生上,它们是不同的。然后,我们使用这些信息来表示错误并对其进行补偿。用于从平坦输出产生信号并滤除噪声的技术是基于b样条参数化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fault detection, isolation, and recovery using spline tools and differential flatness with application to a magnetic lévitation system
This paper discusses fault detection and isolation for continuous-time systems using B-Splines and the notion of differential flatness. The idea is, from the system's flat outputs (which are obtained directly from measurement or from an observer), we algebraically produce every other measured signal, including the inputs. The corresponding signals are then compared. In nominal condition, a measured signal and its counterpart derived from the flat outputs are similar up to noise and the filter's bandwidth. In the occurrence of faults, they are different. We then use this information to signify a fault and to compensate for it. The techniques used to produce signals from the flat outputs, and filter out the noise, are based on a B-Splines parametrisation.
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