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SMITH PREDICTOR BASED NEURAL CONTROLLER WITH TIME-DELAY ESTIMATION

机译:基于史密斯预测的神经控制器,具有时间延迟估计

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A neural control strategy for nonlinear processes with time-variant time-delay is proposed in this paper. In this strategy, a dynamic neural network based nonlinear Smith predictor is constructed to compensate for the effect of time-delay of a class of nonlinear processes. An on-line optimizing controller is illustrated based on the neural Smith predictor. It is known that the performance of the Smith predictor may be deteriorated if the time-delay of the process changes with time. In order to improve the performance of the Smith predictor, a time-delay adaptation mechanism is introduced into the control structure to track the variation of the time-delay. The simulation, comparing with the classical Smith predictive control, on a continuous-stirred-tank-reactor (CSTR), where the time-delay of the manipulating flow changes with time, is used for the test.
机译:本文提出了具有时变时间延迟的非线性过程的神经控制策略。在该策略中,构造一种动态神经网络的非线性史密斯预测器以补偿一类非线性过程的延迟效果。基于神经史密斯预测器来说明在线优化控制器。众所周知,如果过程随时间变化的时间延迟,则史密斯预测器的性能可能会恶化。为了提高史密斯预测器的性能,将时间延迟适应机构引入控制结构中以跟踪时滞的变化。与经典史密斯预测控制相比,在连续搅拌罐 - 反应器(CSTR)上比较,其中操纵流动随时间变化的时间延迟,用于测试。

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