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Quasi-Zero-Stiffness Based Six-Degree-Of-Freedom Absolute Displacement And Attitude Measurement Device

机译:基于六维自由度绝对位移和姿态测量装置的准零刚度

摘要

The present invention discloses a quasi-zero-stiffness (QZS) based six-degree-of-freedom (6-DOF) absolute displacement and attitude measurement device. A lower end coil and an upper end coil are respectively charged with currents in the opposite directions; The electromagnetic field and the magnetic fields of an upper magnet and a lower magnet per se are mutually acted to produce an electromagnetic stiffness opposite to the stiffness of a spring. The stiffness of the whole leg is close to zero stiffness. When the to-be-measured platform generates space motion, the reference platform is in the stationary state. At this point, the deformation amounts of the six legs can be measured by laser displacement sensors. The six deformation amounts are respectively inputted into the displacement and attitude resolver, and by forward kinematic solution of the 6-DOF device, the displacement and the attitude of the to-be-measured platform can be obtained.
机译:本发明公开了一种基于六自由度(6-DOF)绝对位移和姿态测量装置的准零刚度(QZS)。 下端线圈和上端线圈分别在相反方向上充电。 电磁场和上部磁体的磁场和下磁体的相互作用以产生与弹簧的刚度相反的电磁刚度。 整个腿的刚度接近零刚度。 当待测平台产生空间运动时,参考平台处于静止状态。 此时,可以通过激光位移传感器测量六个腿的变形量。 六种变形量分别输入位移和姿态旋转变压器,并通过6-DOF器件的前进运动溶液,可以获得待测平台的位移和姿势。

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