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Fabrication and testing of an energy-harvesting hydraulic damper

机译:能量收集液压缓冲器的制造和测试

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摘要

Hydraulic dampers are widely used to dissipate energy during vibration damping. In this paper, an energy-harvesting hydraulic damper is proposed for collecting energy while simultaneously damping vibration. Under vibratory excitation, the flow of hydraulic oil inside the cylinder of the damper is converted into amplified rotation via a hydraulic motor, whose output shaft is connected to an electromagnetic generator capable of harvesting a large amount of energy. In this way, the vibration is damped by both oil viscosity and the operation of an electrical mechanism. An electromechanical model is presented to illustrate both the electrical and mechanical responses of the system. A three-stage identification approach is introduced to facilitate the model parameter identification using cycle-loading experiments. A prototype device is developed and characterized in a test rig. The maximum power harvested during the experiments was 435.1 W (m s-1)-1, using a predefined harmonic excitation with an amplitude of 0.02 m, a frequency of 0.8 Hz, and an optimal resistance of 2 Ω. Comparison of the experimental and computational results confirmed the effectiveness of both the electromechanical model and the three-stage identification approach in realizing the proposed design.
机译:液压阻尼器被广泛用于在减振过程中耗散能量。在本文中,提出了一种能量收集液压阻尼器,用于收集能量同时阻尼振动。在振动激励下,阻尼器气缸内的液压油流通过液压马达转换成放大旋转,该液压马达的输出轴连接到能够收集大量能量的电磁发电机。以这种方式,通过油的粘度和电气机构的操作来减弱振动。提出了一个机电模型来说明系统的电气和机械响应。引入了三阶段识别方法,以利于使用循环加载实验识别模型参数。开发了原型设备,并在测试设备中进行了表征。使用预定义的谐波激励,其振幅为0.02 m,频率为0.8 Hz,最佳电阻为2Ω,在实验过程中获得的最大功率为435.1 W(m s-1)-1。实验和计算结果的比较证实了机电模型和三阶段识别方法在实现拟议设计中的有效性。

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