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Passive Fault Tolerant Control System Using Feed-forward Neural Network for Two-Tank Interacting Conical Level Control System Against Partial Actuator Failures and Disturbances ?

机译:使用前馈神经网络的被动式容错控制系统,用于两罐式交互锥形液位控制系统,以防止部分执行器故障和干扰 ?< / ce:sup>

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摘要

A novel approach for passive fault-tolerant control (PFTC) system design against actuator faults is proposed. The scheme is based on Feed-forward Neural Network (FFNN) plus conventional PI controller, during the fault occurred into system FFNN will give additional control output to the system according to fault magnitude. The FFNN will trained using back-propagation algorithm. To eliminate the steady-state tracking error, the PI controller is also incorporated. The following fault type and input signals are considered: abrupt, step, sine, and trapezoidal trajectory inputs. The effectiveness and the superiority of the proposed approach are demonstrated using Two-Tank Interacting Conical Level Control System (TTICLCS) example. The simulation performed in MATLAB Simulink platform, also different integral errors like IAE, ISE and IATE are presented to validate the proposed approach.
机译:提出了一种针对执行器故障的被动容错控制(PFTC)系统设计的新方法。该方案基于前馈神经网络(FFNN)加上常规的PI控制器,在系统发生故障时,FFNN将根据故障的大小向系统提供额外的控制输出。 FFNN将使用反向传播算法进行训练。为了消除稳态跟踪误差,还集成了PI控制器。考虑以下故障类型和输入信号:突变,阶跃,正弦和梯形轨迹输入。通过两罐相互作用锥形液位控制系统(TTICLCS)实例证明了该方法的有效性和优越性。在MATLAB Simulink平台上进行的仿真,还提出了不同的积分误差(如IAE,ISE和IATE)以验证所提出的方法。

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