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Active vibration isolation system based on the LADRC algorithm for atom interferometry

机译:基于LADRC干涉测量学的LADRC算法的主动隔离系统

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A new, to the best of our knowledge, method based on the linear active disturbance rejection control (LADRC) algorithm is proposed to design and build a vertical vibration isolator below 0.1 Hz for cold-atom interferometry. This system combines the control system that is used to process and to reduce feedback vibrations measured by a seismometer and a voice coil that is used to cancel the motion of a commercial passive vibration isolation platform. When the feedback is on, the vertical vibration is reduced by an additional factor of up to 1000 from 0.1 to 5 Hz, while the system has a steady oscillation with a natural period of 66 s. The experimental results show that the LADRC is an effective control algorithm for this application and performs better than the classic lag compensation filters in our case. In addition, there are fewer parameters to adjust in this method, and we only need to tune the feedback gain of the system state error for its application. (C) 2020 Optical Society of America.
机译:据我们所知,一种新的,基于线性有源干扰抑制控制(LADRC)算法的方法,用于设计和构建低于0.1Hz的垂直振动隔离器,用于冷原子干涉测量。该系统结合了用于处理的控制系统,并减少由地震计测量的反馈振动和用于消除商业无源振动隔离平台的运动的语音线圈。当反馈开始时,垂直振动减小了0.1至5Hz的额外因子,距离为1000,而系统具有稳定的振荡,具有66秒的自然周期。实验结果表明,Ladrc是本申请的有效控制算法,并且在我们的情况下比经典的滞后补偿滤波器更好。此外,在此方法中调整的参数较少,我们只需要调整系统状态错误的反馈增益,以其应用程序。 (c)2020美国光学学会。

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    《Applied optics》 |2020年第11期|共7页
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