Magnetically suspended gyroscope north-seeking data gross error rejecting method based on double position characteristics
A magnetic levitation gyro and gross error rejection technology, which is applied to measuring devices, instruments, etc., can solve the problems of gyro data transition and reduce the north-finding accuracy of the magnetic levitation gyroscope, etc.
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[0116] A station is set up on the control point J1 of a survey line J1→J2 of the underground conductor, and an external disturbance torque is applied to the gyro north-seeking data of the survey line when performing north-seeking observations. The coordinate azimuth α' of the survey line can be calculated from the known coordinates of the original underground conductor 坐 =57°50′41″, the azimuth angle of the gyro coordinates measured by the gyro total station is α 坐(未修正) =57°51′01″, the difference between the two is 20″, it can be seen that the disturbance torque causes a large deviation in the north-finding and orientation results of the gyro.
[0117] Step 1: Calculation of the prior value of the azimuth angle of the underground gyroscope.
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