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首页> 外文期刊>Journal of Vibration and Acoustics >Modular Vibration Control Unit Formed by an Electromagnetic Proof-Mass Transducer and Sweeping Resistive-Inductive Shunt
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Modular Vibration Control Unit Formed by an Electromagnetic Proof-Mass Transducer and Sweeping Resistive-Inductive Shunt

机译:由电磁防磁传感器形成的模块化振动控制单元和扫描电阻电感分流器

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摘要

This paper presents a vibration control unit formed by an electromagnetic proof-mass transducer connected to a sweeping resistive-inductive (RL)-shunt, which can be used to control broadband flexural vibrations of thin structures. The shunt is composed of a resistor and an inductor in series, whose values vary harmonically in time. The design and practical implementation of an electromagnetic transducer and harmonically varying shunt is first discussed. The unit is then tested on a thin-walled cylinder exposed to a broadband disturbance, considering two operation modes: fixed and sweeping RL-shunts. The former mode sets the unit to control the resonant response of a target flexural mode of the cylinder. The latter mode sets the unit to control the resonant responses of multiple modes of the cylinder with natural frequencies confined in a target frequency band. The study demonstrates the practical feasibility of a unit, which sweeps the natural frequency and the damping ratio of the transducer between 36 Hz and 187 Hz and between 4% and 60%. Also, it shows the unit generates broadband control of the flexural vibration of a cylinder, with reductions of the peak responses of the natural modes resonating in frequency band of the sweep comprised between 2 and 13 dB.
机译:本文呈现由连接到扫掠电阻电感(RL) - 竖立的电磁防料传感器形成的振动控制单元,其可用于控制薄结构的宽带弯曲振动。分流器由电阻器和串联的电感器组成,其值随时间谐析。首先讨论了电磁换能器的设计和实际实现和谐波变化分流器。然后考虑到两个操作模式,在暴露于宽带干扰的薄壁圆柱体上进行测试:固定和扫描RL - 分流器。前模式设定单元以控制气缸的目标弯曲模式的谐振响应。后一项模式设置单元以控制具有在目标频带中限制的自然频率的圆柱体的多种模式的谐振响应。该研究表明了一个单位的实际可行性,该装置扫过了36Hz和187Hz之间的换能器的固有频率和阻尼比率,并且在4%和60%之间。此外,它表示该单元产生圆柱体的弯曲振动的宽带控制,减少了在扫描的频带的谐振中谐振的自然模式的峰值响应,其包括在2和13dB之间。

著录项

  • 来源
    《Journal of Vibration and Acoustics 》 |2020年第6期| 061005.1-061005.16| 共16页
  • 作者单位

    Polytechnic Department of Engineering and Architecture Universita degli Studi di Udine Via delle Scienze 208 33100 Udine Italy;

    Polytechnic Department of Engineering and Architecture Universita degli Studi di Udine Via delle Scienze 208 33100 Udine Italy;

    Polytechnic Department of Engineering and Architecture Universita degli Studi di Udine Via delle Scienze 208 33100 Udine Italy;

    Polytechnic Department of Engineering and Architecture Universita degli Studi di Udine Via delle Scienze 208 33100 Udine Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    damping; mechatronics and electromechanical systems; vibration control;

    机译:减震;机电一体化和机电系统;振动控制;

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