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Research on hardware-in-the-loop simulation of single point suspension system based on fuzzy PID

机译:基于模糊PID的单点悬架系统硬件 - 环路仿真研究

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The stability control of maglev trains is one of the core problems in the research of maglev train technology and the realisation of this goal is of the great scientific value in the field of magnetic levitation. Based on this, the research on the suspension control strategy of single point maglev system is founded and the control strategy is verified by experiments on Magnetic Levitation Ball System (MLBS). Aiming at the structure of multi-group independent control system of maglev train suspension frame, in order to improve the overall stability control ability of the suspension frame, the coupling relationship between the subsystems is established by introducing the suspension response deviation compensator. Finally, the effect of single point suspension control system is discussed and the cooperative control of suspension frame is carried out on MATLAB. Simulation and analysis show that each subsystem has good anti-jamming ability and the suspension system realises the balanced and stable control under different interference signals, which provides a certain reference value for further study of maglev train suspension control.
机译:Maglev列车的稳定性控制是Maglev火车技术研究中的核心问题之一,实现这一目标的实现是磁悬浮领域的巨大科学价值。基于这一点,建立了对单点磁悬浮系统的悬架控制策略的研究,并通过磁悬浮球系统(MLB)的实验验证了控制策略。针对Maglev列车悬架框架的多组独立控制系统的结构,为了提高悬架框的整体稳定性控制能力,通过引入悬架响应偏差补偿器来建立子系统之间的耦合关系。最后,讨论了单点悬架控制系统的效果,并且在MATLAB上执行悬架帧的协同控制。仿真和分析表明,每个子系统具有良好的抗干扰能力,悬架系统在不同干扰信号下实现平衡和稳定的控制,这提供了一定的参考值,以进一步研究Maglev列车悬架控制。

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