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Second-order sliding mode fault-tolerant control of heat recovery steam generator boiler in combined cycle power plants

机译:联合循环发电厂余热锅炉的二阶滑模容错控制

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摘要

Power generation plants are intrinsically complex systems due to their numerous internal components. Higher energy efficiency in power plants is now achieved through employing combined cycles. In this article, an adaptive robust Sliding Mode Controller (SMC) is designed to overcome the faults in Heat Recovery Steam Generator boilers (HRSG boilers) as one of the main parts of a combined cycle plant. On condition that a fault occurs in the HRSG boiler, the control system must be able to reconfigure its parameters to maintain the admissible thresholds in dynamic variables such as drum pressure, steam temperature, and drum water level. To achieve good performance for the boiler, the proposed adaptive robust SMC shall conquer the effects of faults and uncertainties by estimating their upper bounds adaptively, and force the outputs of the multivariable boiler to track the outputs of a desired multivariable reference model. Manipulating a suitable control input and using second-order sliding mode control strategy, the output tracking error slides to zero on a PID sliding surface. Besides tracking, the controlled boiler tolerates faults in system matrix, faults in input matrix, and external disturbance signal. Numerical simulations confirm the effectiveness of the proposed FTC (Fault-Tolerant Control) system for an uncertain non-minimum phase HRSG boiler.
机译:发电厂由于内部结构众多,因此本质上是复杂的系统。现在,通过采用联合循环可提高电厂的能源效率。在本文中,设计了一种自适应鲁棒滑模控制器(SMC),以克服作为联合循环电厂主要部件之一的余热回收蒸汽发生器锅炉(HRSG锅炉)的故障。在HRSG锅炉发生故障的情况下,控制系统必须能够重新配置其参数,以保持动态变量(例如汽包压力,蒸汽温度和汽包水位)的允许阈值。为了使锅炉获得良好的性能,所提出的自适应鲁棒SMC应通过自适应地估计故障和不确定性的上限来克服故障和不确定性的影响,并迫使多变量锅炉的输出跟踪所需的多变量参考模型的输出。操纵合适的控制输入并使用二阶滑模控制策略,输出跟踪误差在PID滑动面上滑动为零。除了跟踪之外,受控锅炉还可以容忍系统矩阵中的故障,输入矩阵中的故障以及外部干扰信号。数值模拟证实了所提出的FTC(容错控制)系统对于不确定的非最小相位HRSG锅炉的有效性。

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