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Schuler Oscillation Error Compensation Method for Low-speed SINS

机译:舒尔振荡误差补偿低速循环的补偿方法

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The real-time accuracy is always the key technical index of strapdown inertial navigation system (SINS). However, Schuler oscillation errors in system errors reduce the precision of SINS a lot. Aiming at compensating Schuler oscillation errors of SINS, a Schuler oscillation error compensation method For Low-speed SINS is proposed in this paper. Retaining autonomy of SINS, this method can compensate Schuler oscillation errors of low-speed maneuvering SINS effectively. According to the motion characteristics of low-speed carrier, Variable-foucault-oscillation-frequency SINS (VSINS) is obtained by compensating the harmful acceleration related to the earth rotation rate with weighting coefficient k. Then, three VSINSs with different Foucault oscillation frequencies are obtained by selecting three different weighting coefficients, and the mean value of the output result of the three navigation algorithms is used as the navigation result of the whole system. The mean square error for the amplitude of compensated Schuler oscillation becomes relatively minor. Computer simulation results show that the method has good performance in compensating Schuler oscillation of SINS, which improves the real-time accuracy of SINS effectively.
机译:实时精度始终是泰斯特惯性导航系统(SINS)的关键技术指标。但是,系统错误中的舒勒振荡误差会降低循环的精度。旨在补偿血管振荡误差,本文提出了一种舒尔振荡误差补偿方法,用于低速循环。保留罪的自主权,这种方法可以补偿低速操纵血管的舒尔振荡误差。根据低速载体的运动特性,可变傅科振荡频率捷联(VSINS)通过补偿涉及与加权系数k地球自转速率的有害加速度获得。然后,通过选择三个不同的加权系数来获得具有不同Foucault振荡频率的三个VSINS,并且三个导航算法的输出结果的平均值用作整个系统的导航结果。补偿梭振荡幅度的均方误差变得相对较小。计算机仿真结果表明,该方法在补偿血管振荡方面具有良好的性能,从而提高了SINS的实时精度。

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