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A Robust Takagi-Sugeno Fault Diagnostic Scheme for Remaining Useful Life Estimation

机译:一种稳健的Takagi-sugeno故障诊断方案,用于剩下有用的生命估算

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The paper deals with a problem of remaining useful life estimation for a class of fuzzy systems described with a well-known Takagi-Sugeno modeling paradigm. Such an approach is especially worth of investigation due to the fact that it allows predicting a time to the failure of each actuator. As a result, it makes it possible to planning their maintenance aiming at expanding their useful lifetime. In order to do so, the proposed methodology employs a fault estimation strategy. Such a fault estimation is accompanied with a state estimation. The proposed methodology enables suitable robustness while estimating the state as well as both actuator and sensor faults. Subsequently, the obtained estimates are used for predicting the actuator fault evolution, and hence, assessing actuators remaining useful time. The final part of the paper illustrates an example with an application of the proposed approach to the laboratory multi-tank system.
机译:本文涉及剩余寿命估计的一类用着名的Takagi-sugeno建模范式的模糊系统的问题。 由于它允许预测每个执行器的故障的事实,这种方法尤其值得调查。 因此,它可以规划他们的维护,旨在扩大其有用的寿命。 为此,所提出的方法使用故障估计策略。 这种故障估计伴随着状态估计。 所提出的方法能够实现合适的鲁棒性,同时估计状态以及致动器和传感器故障。 随后,获得的估计用于预测致动器故障演化,因此评估致动器剩余的有用时间。 本文的最后一部分示出了具有所提出的实验室多罐系统的方法的示例。

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