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Assessment of the Magnetic Hysteretic Behaviour of MR Dampers through Sensorless Measurements

机译:通过无传感器测量评估MR阻尼器的磁滞行为

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摘要

Magnetorheological (MR) dampers are well-known devices based on smart fluids. The dampers exhibit nonlinear hysteretic behaviour which affects their performance in control systems. Hence, an effective control scheme must include a hysteresis compensator. The source of hysteresis in MR dampers is twofold. First, it is due to the compressibility and inertia of the fluid. Second, magnetic hysteresis is the inherent property of ferromagnetic materials that form the control circuit of the valve including MR fluid. While the former was studied extensively over the past years using various phenomenological models, the latter has attracted less attention. In this paper, we analyze the magnetic hysteretic behaviour of three different MR dampers by investigating their current-flux relationships. Two dampers operate in flow mode, whereas the third one is a shear-mode device (brake). The approach is demonstrated using a sensorless magnetic flux estimation technique. We reveal the response of the dampers when subjected to sinusoidal inputs across a wide range of operating conditions and excitation inputs. Our observations of the flux data showed that the hysteresis is influenced by both amplitude and the frequency of the excitation input. The procedure allows to analyze the magnetic hysteresis independently of other sources of hysteresis in MR dampers; on this basis, more effective damper models and control algorithms can be developed in the future.
机译:磁流变(MR)阻尼器是基于智能流体的众所周知的设备。阻尼器表现出非线性滞后行为,从而影响其在控制系统中的性能。因此,有效的控制方案必须包括一个磁滞补偿器。 MR阻尼器的滞后源是双重的。首先,这归因于流体的可压缩性和惯性。其次,磁滞是铁磁性材料的固有特性,铁磁性材料形成了包括MR流体的阀门控制回路。尽管在过去几年中使用各种现象学模型对前者进行了广泛的研究,但后者却受到了较少的关注。在本文中,我们通过研究三种电流阻尼器的磁通量关系来分析它们的磁滞特性。两个阻尼器以流动模式运行,而第三个阻尼器是剪切模式设备(制动)。使用无传感器磁通量估算技术演示了该方法。我们揭示了阻尼器在宽范围的工作条件和励磁输入中经受正弦输入时的响应。我们对通量数据的观察表明,磁滞受励磁输入的幅度和频率影响。该程序可以独立于MR阻尼器的其他磁滞源来分析磁滞。在此基础上,将来可以开发出更有效的阻尼器模型和控制算法。

著录项

  • 来源
    《Shock and vibration》 |2018年第8期|3740208.1-3740208.21|共21页
  • 作者单位

    AGH Univ Sci & Technol, Dept Proc Control, Krakow, Poland;

    Cracow Univ Technol, Dept Automat & Informat Technol, Krakow, Poland;

    Tech Ctr Krakow, BWI Grp, Krakow, Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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