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首页> 外文期刊>The Journal of Navigation >The Compensation Effects of Gyros' Stochastic Errors in a Rotational Inertial Navigation System
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The Compensation Effects of Gyros' Stochastic Errors in a Rotational Inertial Navigation System

机译:旋转惯性导航系统中陀螺仪随机误差的补偿效应

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The errors of an inertial navigation system (INS) in response to gyros' errors can be effectively reduced by the rotation technique, which is a commonly used method to improve an INS's accuracy. A gyro's error consists of a deterministic contribution and a stochastic contribution. The compensation effects of gyros' deterministic errors are clear now, but the compensation effects of gyros' stochastic errors are as yet unknown. However, the compensation effects are always needed in a rotational inertial navigation system's (RINS) error analysis and optimization study. In this paper, the compensation effects of gyros' stochastic errors, which are modelled as a Gaussian white (GW) noise plus a first-order Markov process, are analysed and the specific formulae are derived. During the research, the responses of an INS's and a RINS's position error equations to gyros' stochastic errors are first analysed. Then the compensation effects of gyros' stochastic errors brought by the rotation technique are discussed by comparing the error propagation characteristics in an INS and a RINS. In order to verify the theory, a large number of simulations are carried out. The simulation results show a good consistency with the derived formulae, which can indicate the correctness of the theory.
机译:惯性导航系统(INS)响应陀螺仪误差而产生的误差可以通过旋转技术有效降低,该技术是提高INS精度的常用方法。陀螺仪的误差由确定性贡献和随机性贡献组成。陀螺仪的确定性误差的补偿效果现在很明显,但是陀螺仪的随机误差的补偿效果仍然未知。但是,旋转惯性导航系统(RINS)的误差分析和优化研究始终需要补偿效果。本文分析了以高斯白噪声和一阶马尔可夫过程为模型的陀螺仪随机误差的补偿效果,并推导了具体公式。在研究过程中,首先分析了INS和RINS的位置误差方程对陀螺仪随机误差的响应。然后,通过比较惯性导航系统和惯性导航系统中误差的传播特性,讨论了旋转技术带来的陀螺仪随机误差的补偿效果。为了验证该理论,进行了大量模拟。仿真结果与所推导的公式具有很好的一致性,可以说明该理论的正确性。

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