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Fault tolerant shape control for particulate process systems under simultaneous actuator and sensor faults

机译:在执行器和传感器同时发生故障的情况下,颗粒过程系统的容错形状控制

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摘要

The problem of fault tolerant shape control for particle size distribution (PSD) process subject to simultaneous time-varying actuator and sensor faults is studied. In this work, sensor and actuator faults are taken into consideration in a unified framework, and estimated by using adaptive observer technique. For the PSD process, the output distribution, rather than the system output signal itself, is adopted for shape control. Square root rational B-spline approximation is used to fit the distribution shape. An innovative on-line fault estimation scheme is proposed for simultaneous actuator and sensor faults estimation. Then an augmented controller based on the virtual actuator and virtual sensor techniques is designed to compensate for the faults and realise PSD shape tracking. A simulation example of emulsion polymerisation is used to validate the proposed scheme and satisfactory performance is obtained.
机译:研究了同时执行器和传感器故障时变的颗粒尺寸分布(PSD)过程的容错形状控制问题。在这项工作中,在统一的框架中考虑了传感器和执行器故障,并使用自适应观测器技术对其进行了估算。对于PSD过程,采用输出分布而不是系统输出信号本身进行形状控制。使用平方根有理B样条近似来拟合分布形状。提出了一种创新的在线故障估计方案,用于同时进行执行器和传感器故障估计。然后设计了基于虚拟执行器和虚拟传感器技术的增强控制器,以补偿故障并实现PSD形状跟踪。乳液聚合的模拟实例用于验证所提出的方案并获得令人满意的性能。

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