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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Remaining Useful Lifetime Prognosis of Controlled Systems: A Case of Stochastically Deteriorating Actuator
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Remaining Useful Lifetime Prognosis of Controlled Systems: A Case of Stochastically Deteriorating Actuator

机译:受控系统的剩余有用寿命预测:执行器随机恶化的情况

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摘要

This paper addresses the case of automatic controlled system which deteriorates during its operation because of components’ wear or deterioration. Depending on its specific closed-loop structure, the controlled system has the ability to compensate for disturbances affecting the actuators which can remain partially hidden. The deterioration modeling and the Remaining Useful Lifetime (RUL) estimation for such closed-loop dynamic system have not been addressed extensively. In this paper, we consider a controlled system with Proportional-Integral-Derivative controller. It is assumed that the actuator is subject to shocks that occur randomly in time. An integrated model is proposed to jointly describe the state of the controlled process and the actuator deterioration. Only the output of the controlled system is available to assess its health condition. By considering a Piecewise Deterministic Markov Process, the RUL of the system can be estimated by a two-step approach. In the first step referred as the “Diagnosis” step, the system state is estimated online from the available monitoring observations by using a particle filtering method. In the second step referred as the “Prognosis” step, the RUL is estimated as a conditional reliability by Monte Carlo simulation. To illustrate the approach, a simulated tank level control system is used.
机译:本文讨论的是自动控制系统的情况,该系统在运行过程中会由于组件的磨损或性能下降而恶化。取决于其特定的闭环结构,受控系统具有补偿影响执行器的干扰的能力,这些干扰可能仍然部分隐藏。对于这种闭环动态系统的劣化建模和剩余使用寿命(RUL)估计尚未得到广泛解决。在本文中,我们考虑具有比例-积分-微分控制器的受控系统。假定执行器会受到时间上随机发生的冲击。提出了一个集成模型来共同描述受控过程的状态和致动器的退化。只有受控系统的输出可用于评估其健康状况。通过考虑分段确定性马尔可夫过程,可以通过两步法估算系统的RUL。在称为“诊断”步骤的第一步中,使用粒子过滤方法从可用的监视观察中在线估计系统状态。在称为“预后”步骤的第二步中,通过蒙特卡洛模拟将RUL估计为条件可靠性。为了说明该方法,使用了模拟的油箱液位控制系统。

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