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A three-degree-of-freedom hybrid vibration isolation system using adaptive proportional control supported by passive weight support mechanism

机译:被动比例支撑机构自适应比例控制的三自由度混合振动隔离系统

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This paper presents a three-degree-of-freedom hybrid vibration isolation system integrated with an active sky-hook damper and a passive weight support mechanism for highly sensitive measurement equipment, e.g. atomic force microscopes, suffering from building vibration. Active sky-hook damper applies proportional controller incorporated with an adaptive filter to reduce the resonance of the passive weight support mechanism at nature frequency. The absolute vibration velocity signal acquired from an accelerator and being processed through an integrator is input to the controller as a feedback signal, and the controller output signal drives the voice coil actuator to produce a sky-hook damper force. The adaptive filter is used to compensate the phase error between the measuring input signal and the absolute vibration velocity. An analysis of this active vibration isolation system is presented, and model predictions are compared to experimental results. The results show that the system could effectively reduce transmissibility at resonance without the penalty of increased transmissibility at higher frequencies both in vertical and horizontal directions.
机译:本文提出了一种三自由度混合振动隔离系统,该系统与有源天钩阻尼器和无源重量支撑机构集成在一起,用于高度敏感的测量设备,例如原子力显微镜,受建筑物振动的影响。主动式天钩阻尼器应用比例控制器,并与自适应滤波器配合使用,以减少被动式重量支撑机构在自然频率下的共振。从加速器获取并经过积分器处理的绝对振动速度信号作为反馈信号输入到控制器,并且控制器输出信号驱动音圈致动器以产生吊钩阻尼器力。自适应滤波器用于补偿测量输入信号和绝对振动速度之间的相位误差。对该主动隔振系统进行了分析,并将模型预测与实验结果进行了比较。结果表明,该系统可以有效地降低共振时的透射率,而不会增加垂直和水平方向上较高频率下的透射率。

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