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一种核磁共振陀螺横向磁场线圈耦合标定方法

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磁场线圈是核磁共振陀螺磁场系统的核心部件,是惰性气体磁共振激励维持、主动磁补偿的核心部件.横向磁场线圈的耦合对磁补偿精度与磁共振激励都有较大影响.因此,横向磁场线圈的耦合标定尤为重要.为解决上述问题,提出了一种基于核磁共振陀螺内置磁力仪的横向磁场线圈耦合标定方法,通过理论仿真和实验设计,验证了其正确性与可行性.实验结果表明,采用所提出的耦合标定方法对X轴对Y轴耦合和Y轴对X轴耦合进行标定,分别为1.86%和3.11%.通过旋转线圈改变装配角度,表明此方法在较小旋转角度时,测量结果不受装配误差的影响.通过标定同一批次的5只线圈,根据结果从中选取耦合较小的线圈进行装配,为核磁共振陀螺线圈的筛选奠定了基础.
A Coupling Calibration Method for Transverse Magnetic Field Coil of Nuclear Magnetic Resonance Gyroscope
The magnetic field coil is the core part of the magnetic field system of the nuclear magnetic resonance gyroscope(NMRG).It is also the core component of the inert gas magnetic resonance excitation maintenance and active magnetic compensation.The coupling of transverse magnetic field coil has great influence on the accuracy of magnetic compensation and magnetic resonance excitation.Therefore,it is very important to calibrate the coupling of the transverse magnetic field coil.In order to solve the above mentioned problems,a coupling calibration method of transverse magnetic field coil based on the built-in magnetometer of NMRG is proposed.The correctness and fea-sibility of this method are verified by theoretical simulation and experimental design.The experimental results show that the proposed coupling calibration method is used to calibrate the X-to-Y-axis coupling and Y-to-X-axis cou-pling,with values of 1.86%and 3.11%,respectively.By rotating the coil to change the assembly angle,it is shown that the measurement results are not affected by the assembly error when the rotation angle is small.By cali-brating a total of 5 coils from the same batch,the coil with less coupling is selected for assembly according to the re-sults,which provides a basis for the selection of NMRG coil.

nuclear magnetic resonance gyroscope(NMGR)alkali metal magnetometermagnetic field coilcoupling of magnetic field coilcoupling calibration of transverse magnetic field coil

张昊、岳亚洲、雷兴、马圣杰

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西安飞行自动控制研究所,陕西 西安 710065

航空惯性技术重点实验室,陕西 西安 710065

核磁共振陀螺仪 碱金属磁力仪 磁场线圈 磁场线圈耦合 横向磁场线圈耦合标定

装备预研重点项目

41417010801

2024

压电与声光
四川压电与声光技术研究所

压电与声光

CSTPCD北大核心
影响因子:0.357
ISSN:1004-2474
年,卷(期):2024.46(1)
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