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Estimation of angular velocity and rate-gyro noise for sensor health monitoring

机译:角速度和速率陀螺噪声的估计,用于传感器健康监测

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Based on an exact kinematics model, this paper considers two strategies aimed at diagnosing the health of a 3-axis rate gyro. In the first strategy, noisy attitude measurements are used to estimate angular velocity; comparing these estimates to the actual rate-gyro measurements provides the means for assessing the health of the rate gyro. In the second strategy, noisy attitude and angular velocity measurements are used to estimate the noise corrupting the rate-gyro measurements; analysis of the noise estimate provides an alternative means for assessing the health of the rate gyro. Both strategies are formulated as input and state estimation problems, where extended retrospective cost input estimation provides an estimate of the unknown input and the unscented Kalman filter provides the state estimate.
机译:基于精确的运动学模型,本文考虑了两种旨在诊断三轴速率陀螺仪健康状况的策略。在第一种策略中,使用嘈杂的姿态测量值来估计角速度。将这些估计值与实际速率陀螺仪测量值进行比较,可以评估速率陀螺仪的​​健康状况。在第二种策略中,使用嘈杂的姿态和角速度测量来估计破坏速率陀螺测量的噪声。噪声估计的分析为评估陀螺仪的健康状况提供了另一种方法。两种策略都被表述为输入和状态估计问题,其中扩展的追溯成本输入估计提供了未知输入的估计,而无味卡尔曼滤波器提供了状态估计。

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