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首页> 外文期刊>Defence science journal >Estimation of Circular Error Probability of Strapped Down Inertial Navigation System by Propagation of Error Covariance Matrix
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Estimation of Circular Error Probability of Strapped Down Inertial Navigation System by Propagation of Error Covariance Matrix

机译:误差协方差矩阵的传播估计惯性导航系统的圆形误差概率

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摘要

This paper provides an error model of the strapped down inertial navigation system in the state space format. A method to estimate the circular error probability is presented using time propagation of error covariance matrix. Numerical results have been obtained for a typical flight trajectory. Sensitivity studies have also been conducted for variation of sensor noise covariances and initial state uncertainty. This methodology seems to work in all the practical cases considered so far. Software has been tested for both the local vertical frame and the inertial frame. The covariance propagation technique provides accurate estimation of dispersions of position at impact. This in turn enables to estimate the circular error probability (CEP) very accurately.
机译:本文以状态空间格式提供了捷联惯性导航系统的误差模型。利用误差协方差矩阵的时间传播,提出了一种估计圆形误差概率的方法。已获得典型飞行轨迹的数值结果。还针对传感器噪声协方差和初始状态不确定性的变化进行了敏感性研究。到目前为止,这种方法似乎在所有实际案例中都有效。软件已针对本地垂直框架和惯性框架进行了测试。协方差传播技术可准确估计碰撞位置的离散度。这进而使得能够非常准确地估计循环误差概率(CEP)。

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