气浮试验台的参数估计

Zhenxian Fu, Yurong Lin, Yang Liu, Xing-lin Chen, Fanghui Chen
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引用次数: 2

摘要

提出了一种三轴气浮试验台参数确定的参数估计方法。工作台是为航天器地面试验提供一个平衡无摩擦的环境。为了平衡悬架,首先必须确定工作台的机械参数,包括其角惯量和质心偏离其旋转中心。然后通过步进电机调节工作台上的滑动质量,使工作台的质心重新定位到工作台的旋转中心。利用角动量定理和科里奥利定理,推导了在重力不平衡力矩和激活力矩影响下工作台旋转的动力学方程。为了产生驱动力矩,建议使用动量轮,其优点是不需要对动量轮进行主动控制,动量轮只需要以恒定速率旋转,从而避免了控制力矩陀螺的奇异性问题和精确调节输出力矩的困难。动量轮产生的陀螺仪扭矩,当它们被表强迫进动时,足以激活表进行参数估计。然后采用最小二乘估计计算所需参数。仿真结果验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parameter estimation of an air-bearing suspended test table
A parameter estimation approach is proposed for parameter determination of a 3-axis air-bearing suspended test table. The table is to provide a balanced and frictionless environment for spacecraft ground test. To balance the suspension, the mechanical parameters of the table, including its angular inertias and centroid deviation from its rotating center, have to be determined first. Then sliding masses on the table can be adjusted by stepper motors to relocate the centroid of the table to its rotating center. Using the angular momentum theorem and the coriolis theorem, dynamic equations are derived describing the rotation of the table under the influence of gravity imbalance torque and activating torques. To generate the actuating torques, use of momentum wheels is proposed, whose virtue is that no active control is required to the momentum wheels, which merely have to spin at constant rates, thus avoiding the singularity problem and the difficulty of precisely adjusting the output torques, issues associated with control moment gyros. The gyroscopic torques generated by the momentum wheels, as they are forced by the table to precess, are sufficient to activate the table for parameter estimation. Then least-square estimation is be employed to calculate the desired parameters. The effectiveness of the method is validated by simulation.
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