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首页> 外文期刊>International Journal of Applied Mathematics and Computer Science >NONLINEAR MODEL PREDICTIVE CONTROL OF A BOILER UNIT: A FAULT TOLERANT CONTROL STUDY
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NONLINEAR MODEL PREDICTIVE CONTROL OF A BOILER UNIT: A FAULT TOLERANT CONTROL STUDY

机译:机组的非线性模型预测控制:容错控制研究

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摘要

This paper deals with a nonlinear model predictive control designed for a boiler unit. The predictive controller is realized by means of a recurrent neural network which acts as a one-step ahead predictor. Then, based on the neural predictor, the control law is derived solving an optimization problem. Fault tolerant properties of the proposed control system are also investigated. A set of eight faulty scenarios is prepared to verify the quality of the fault tolerant control. Based of different faulty situations, a fault compensation problem is also investigated. As the automatic control system can hide faults from being observed, the control system is equipped with a fault detection block. The fault detection module designed using the one-step ahead predictor and constant thresholds informs the user about any abnormal behaviour of the system even in the cases when faults are quickly and reliably compensated by the predictive controller.
机译:本文针对锅炉单元设计了一种非线性模型预测控制。预测控制器是通过递归神经网络实现的,该神经网络充当一步一步的预测器。然后,基于神经预测器,推导控制律以解决优化问题。还研究了所提出的控制系统的容错特性。准备了一组八个故障场景,以验证容错控制的质量。基于不同的故障情况,还研究了故障补偿问题。由于自动控制系统可以隐藏故障,因此控制系统配备了故障检测模块。使用单步提前预测器和恒定阈值设计的故障检测模块可以将系统的任何异常行为通知用户,即使在故障由预测控制器快速可靠地补偿的情况下也是如此。

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