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On-board and/or ground-based gyroless accelerometer calibration with uncertain spacecraft inertia for NASA's Magnetospheric MultiScale (MMS) Mission

机译:航天器惯性不确定的机载和/或地面无陀螺加速度计校准,用于NASA的磁层多尺度(MMS)任务

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Several methods are presented for the on-board and/or ground-based calibration of accelerometers for the spacecraft (s/c) of the NASA Magnetospheric MultiScale (MMS) Mission during mission operation. It is shown that a single lumped bias (represented by 3 parameters) is sufficient to represent all nine accelerometer calibration parameters for sensor bias, orthogonal misalignment and shift in accelerometer position with respect to the s/c center of mass. Dynamic filters/observers are shown to fail if not provided an accurate inertia tensor for estimation. A batch process filter calibration technique is applied to estimate s/c states and is robust against parametric (s/c inertia) uncertainties. Analytical simulations show that the batch method is able to correct accelerometer readings to within 1 micro-g of true acceleration. Preliminary experimental results show qualitative supporting trends for the batch calibration method.
机译:提出了几种方法,用于在任务运行期间对NASA磁层多尺度(MMS)任务的航天器(s / c)进行加速度计的车载和/或地面校准。结果表明,单个集总偏置(由3个参数表示)足以代表传感器偏置,正交失准和相对于s / c质量中心的加速度计位置偏移的所有九个加速度计校准参数。如果未提供用于估计的准确惯性张量,则动态滤波器/观察器将显示失败。批处理过滤器校准技术应用于估算s / c状态,并且对参数(s / c惯性)不确定性具有鲁棒性。分析模拟表明,该批处理方法能够将加速度计读数校正为真实加速度的1微克以内。初步的实验结果显示了批次校准方法的定性支持趋势。

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  • 来源
    《American Control Conference;ACC》|2012年|p.185- 190|共6页
  • 会议地点 Montreal(CA)
  • 作者

    Jenkins, Benjamin;

  • 作者单位

    Department of Mechanical Engineering Massachusetts Institute of Technology;

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