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Implementation of floor vibration feedforward using an absolute displacement sensor combined with acceleration PI feedback

机译:使用绝对位移传感器结合加速度PI反馈实现地板振动前馈

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In the field of vibration control of semiconductor exposure equipments, commercial accelerometers have been used as feedforward sensors of floor vibrations. In order to suppress direct motion i.e., disturbances against an isolated table, the equipments have air springs in anti-vibration apparatuses. Therefore, once integration was required to provide the floor vibration feedforward, even when we utilized an integral characteristic of the air spring. In this paper, an absolute displacement sensor is utilized instead of the accelerometers to detect velocity and displacement signals of the floor vibration, and these signals are directly fed back to a voice coil motor as feedforward signals. Then, we can implement the floor vibration feedforward without amplifications of the pink-noise in low frequency. Although the effects of the feedforward are generally investigated in frequency responses of transmissibility, we evaluate time responses. As a result, transmissions of the floor vibrations are successfully suppressed on the isolated table.
机译:在半导体曝光设备的振动控制领域中,商用加速度计已经用作地板振动的前馈传感器。为了抑制直接运动,即对孤立的桌子的干扰,设备在防振装置中具有空气弹簧。因此,即使我们利用了空气弹簧的整体特性,也需要一次集成以提供地板振动前馈。在本文中,使用绝对位移传感器代替加速度计来检测地板振动的速度和位移信号,并将这些信号作为前馈信号直接反馈到音圈电机。然后,我们可以实现地板振动前馈,而不会在低频下放大粉红噪声。尽管前馈的影响通常在透射率的频率响应中进行了研究,但我们还是评估了时间响应。结果,在孤立的桌子上成功地抑制了地板振动的传递。

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