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A Nonlinear Program for Angular-Velocity Estimation From Centripetal-Acceleration Measurements

机译:基于向心加速度测量的角速度估计的非线性程序

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摘要

Measuring the trajectory of a rigid body in space is commonly done using an inertial measurement unit composed of one triaxial accelerometer and one triaxial gyroscope. When the rigid body undergoes high accelerations, it is often preferable to resort to an array of accelerometers rather than the traditional accelerometer–gyroscope combination, an approach that is now common in crashworthiness and other biomechanics applications. In this paper, we present an algorithm for the estimation of the rigid-body angular velocity from the centripetal components of the accelerations measured by the array of accelerometers. The proposed algorithm and the others available in the literature were benchmarked using the accelerometer array octahedral constellation of twelve accelerometers. In the reported testing conditions, the proposed method is slightly more robust than any other based on centripetal-acceleration measurements.
机译:通常使用由一个三轴加速度计和一个三轴陀螺仪组成的惯性测量单元来测量空间中刚体的轨迹。当刚体经受高加速度时,通常更喜欢诉诸加速度计阵列,而不是传统的加速度计-陀螺仪组合,这种方法现在在防撞性和其他生物力学应用中很常见。在本文中,我们提出了一种从加速度计阵列测得的加速度的向心分量估算刚体角速度的算法。使用十二个加速度计的加速度计阵列八面体星座对所提出的算法和文献中可用的其他算法进行基准测试。在报告的测试条件下,所提出的方法比基于向心加速度测量值的任何其他方法都更加健壮。

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