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Analysis and compensation methods for time delays in an impact buffer system based on magnetorheological dampers

机译:基于磁流变阻尼器的冲击缓冲系统中时滞的分析与补偿方法

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Magnetorheological dampers have been widely studied as versatile real-time actuators for solving vibration problems in various structures and systems. However, the inherent time delay problem of magnetorheological actuators may cause performance degradation of semi-active control systems. The primary purposes of this article are to provide a comprehensive analysis on the time delay of an impact buffer system based on a magnetorheological damper and to propose compensation methods to reduce the time delay. To this end, this study evaluated the electromagnetic circuit in the magnetorheological damper and designed an advanced correcting circuit to improve the response time. The simulation results show that the proposed circuit reduces the time delay by 5ms. Using a magnetorheological buffer system setup, its force response times were tested. The experimental results show that the electromagnetic circuit plays a significant role in the time delay and it is highly dependent on the effectiveness of the electric parts of the control hardware. Furthermore, a proportional-integral-derivative controller is able to reduce the time delay and improve the dynamic performance of the magnetorheological impact buffer system.
机译:磁流变阻尼器已被广泛研究为解决各种结构和系统中振动问题的通用实时执行器。但是,磁流变致动器固有的时间延迟问题可能会导致半主动控制系统的性能下降。本文的主要目的是对基于磁流变阻尼器的冲击缓冲系统的时延进行全面分析,并提出减少时延的补偿方法。为此,本研究评估了磁流变阻尼器中的电磁电路,并设计了一种先进的校正电路以改善响应时间。仿真结果表明,该电路将时间延迟降低了5ms。使用磁流变缓冲系统设置,测试了其力响应时间。实验结果表明,电磁电路在时间延迟方面起着重要作用,并且高度依赖于控制硬件的电子部件的有效性。此外,比例积分微分控制器能够减少时间延迟并改善磁流变冲击缓冲系统的动态性能。

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