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Study on Improved Fuzzy Immune PID Controller for Maglev transportation System with track irregularity

机译:轨道不规则性磁悬浮运输系统改进模糊免疫PID控制器的研究

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Track irregularity is one of the most important aspects of the suspension control performance impact in maglev transportation system(MTS). Due to the track irregularity phenomenon of suspension system, the Fuzzy PID(F-PID) control is unable to accurately track irregularity of track changes. Based on the qualitative analysis to MTS, through modifying conventional F-PID controller, the article establishes Fuzzy Immune PID(FI-PID) Controller based on the biological immune system theory. The control strategy designed nonlinear P controller, using the immune algorithm of on-line adjustment of P and the fuzzy control approximating the nonlinear function of the immune P control parameters and the fuzzy control designed the ID controller for adjusting the parameters of I and D for enhancing the robust performance of the suspension system and adapting to the change of track irregularity. Simulation results show that the FI-PID control is confirmed more effectively to realize tracking compared with F-PID, faster response speed, more simple structure, easier operation for the track interference and load disturbance of the suspension system. This provides a very good way to solve the interference problem of orbit of the maglev transportation system.
机译:轨道不规则是Maglev运输系统(MTS)中悬架控制性能影响最重要的方面之一。由于悬浮系统的轨道不规则现象,模糊PID(F-PID)控制无法准确地跟踪轨道变化的不规则性。基于对MTS的定性分析,通过修改传统的F PID控制器,该物品基于生物免疫系统理论建立模糊免疫PID(FI-PID)控制器。控制策略设计非线性P控制器,使用P的直线调整免疫算法和近似免疫P控制参数的非线性函数的模糊控制,模糊控制设计了ID控制器,用于调整I和D的参数增强悬架系统的稳健性能,并适应轨道不规则的变化。仿真结果表明,与F-PID相比,FI-PID控制更有效地实现了跟踪,更快的响应速度,更简单的结构,更容易操作悬架系统的轨道干扰和负载干扰。这提供了一种解决Maglev运输系统轨道干扰问题的非常好方法。

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