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Time delay analysis and constant time-delay compensation control for MRE vibration control system with multiple-frequency excitation

机译:多频激励MRE振动控制系统的时间延迟分析与恒定时间延迟补偿控制

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摘要

Magnetorheological elastomer (MRE) vibration isolation method has attracted more attention in vibration engineering fields. Time delay in real time control system has an important influence on the control effect, especially for the vibration system with periodic excitations. For the phase difference between the response signal and controlled signal caused by time delay will reduce the vibration control effect or even make the vibration more intense. Therefore, the main purpose in this paper is to improve the vibration attenuation of the MRE vibration control system by analyzing the cause of the time delay and designing the time-delay compensator (TDC) based on the traditional fuzzy controller. The time delay in MRE vibration control system, may be generated by controller, actuator, filter and current driver, was analyzed in theory, and experimental test was carried out to estimate the value. Then a constant TDC was designed for the various vibration amplitude and frequency (single frequency and multiple frequencies). Finally, the real-time control experiments were conducted to verify the effectiveness of the proposed TDC, and the results illustrated that the acceleration RMS with TDC has been attenuated more greatly than that without TDC. Meanwhile, the lower energy consumption is another benefit.
机译:磁流变弹性体(MRE)振动隔离方法引起了振动工程领域的更多关注。实时控制系统中的时间延迟对控制效果具有重要影响,特别是对于具有周期性激励的振动系统。对于响应信号与由时间延迟引起的受控信号之间的相位差会降低振动控制效果,甚至使振动更加强烈。因此,本文的主要目的是通过分析基于传统模糊控制器的时间延迟和设计时滞补偿器(TDC)来改善MRE振动控制系统的振动衰减。在理论上分析了MRE振动控制系统中的时间延迟,可以通过控制器,致动器,过滤器和电流驱动器产生,并进行实验测试以估计价值。然后设计恒定的TDC用于各种振动幅度和频率(单频和多个频率)。最后,进行了实时控制实验以验证所提出的TDC的有效性,并且所示结果表明,具有TDC的加速度RMS比没有TDC更大的衰减。同时,能量消耗较低是另一个好处。

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