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Multi-objective optimization based fractional order model-free controller for boiler drum system

机译:基于多目标优化的锅筒系统无分数阶无模型控制器

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Boiler drum system with time-varying characteristics is a complex industrial plant and has attracted more and more attention. Advanced control theory focusing time-varying characteristics and low complexity is necessary in the boiler system operation. However, several model-based methods are so limited by the model accuracy that they can't be applied in the real devices very well. In order to solve this problem, the model-free control (MFC) is used to provide the ability of disturbance rejection and robustness. By combining MFC with fractional calculus, the control performance is improved. A new approach called fractional order model-free control (FOMFC) is developed in this paper for boiler drum system. A series of FOMFCs are explored to compare with the MFC and PID controller. Multi-objective optimization is used in the design of FOMFCs for a boiler drum level system. Comprehensive analysis and simulation results on a boiler system show the effectiveness of the FOMFC controller.
机译:具有时变特性的锅炉鼓系统是一个复杂的工厂,受到越来越多的关注。在锅炉系统运行中,需要以时变特性和低复杂度为重点的先进控制理论。但是,几种基于模型的方法受到模型精度的限制,以致不能很好地应用于实际设备中。为了解决这个问题,无模型控制(MFC)用于提供干扰抑制和鲁棒性的能力。通过将MFC与分数演算结合使用,可以提高控制性能。本文针对锅炉鼓系统开发了一种新的方法,称为分数阶无模型控制(FOMFC)。探索了一系列FOMFC,以与MFC和PID控制器进行比较。多目标优化用于锅炉鼓级系统的FOMFC的设计中。在锅炉系统上的综合分析和仿真结果表明了FOMFC控制器的有效性。

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