放热化学反应器的神经模糊控制

Jana Kmeťová, A. Vasickaninova, J. Dvoran
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引用次数: 5

摘要

本文研究了非线性控制系统的神经模糊控制器设计。所设计的神经模糊控制器为Takagi-Sugeno型,每个输入考虑两个高斯隶属函数。基准系统为连续搅拌槽式反应器(CSTR),用于环氧丙烷水解的一级放热化学反应。反应器的处理受各种不确定因素的影响,如测量噪声、变参数、扰动和常规控制可能无法达到令人满意的控制性能。通过控制仿真对其控制性能进行了研究。将所设计的神经模糊控制器所保证的控制轨迹与经典PI控制器所产生的控制轨迹进行了比较。仿真结果表明,该方法提高了系统的控制性能,既具有设定点跟踪能力,又具有抗扰能力。
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Neuro-fuzzy control of exothermic chemical reactor
The paper deals with the neuro-fuzzy controller design for nonlinear controlled system. The designed neuro-fuzzy controller was Takagi-Sugeno type with two Gaussian membership functions for each considered input. The benchmark system represents Continuous Stirred Tank Reactor (CSTR) with first order exothermic chemical reaction of propylene oxide hydrolyses. Processing of the reactor is influenced by various uncertainties as e.g. measurement noise, varying parameters, disturbances, and conventional control may not lead to satisfying control performance. The control performance was investigated using simulation of control. The control trajectory ensured by the designed neuro-fuzzy controller was compare with the ones generated by the classical PI controller. The simulation results confirmed improved the control performance of the both, the set-point tracking and the disturbance rejection.
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