Modeling and Simulation of Nuclear Magnetic Resonance Gyroscope

被引:0
|
作者
Shu Qiang [1 ]
Zhu Mingzhi [1 ]
Wang Baoxu [1 ]
Wu Wenkai [1 ]
机构
[1] China Acad Engn Phys, Inst Syst Engn, Mianyang, Peoples R China
关键词
gyroscopes; nuclear magnetic resonance; nuclear spin; precession; close-loop;
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Nuclear magnetic resonance (NMR) gyroscope characterized by low cost and miniature is promising in next generation of inertial gyroscopes. The basic theory of NMR gyroscope is introduced and a parameterized model based on Bloch equations is proposed. The condition of the maximum nuclear spin in xy plane is given. Also given is the close-loop control method of transverse driving magnetic field. Simulation of the NMR model and close-loop control of the driving magnetic field is made. It is found that the nuclear spin of noble gas isotope precesses around the holding magnetic field along z axis at a Larmor frequency and the precession phase of the nuclear spin of noble gas isotope in xy plane is modulated by phase of rotation of the gyroscope. To maintain the precession of nuclear spin the phase of the driving field should closely follow that of the precession of the nuclear spin when the gyroscope is rotating.
引用
收藏
页码:367 / 371
页数:5
相关论文
共 50 条
  • [1] Modeling of the Transient Behavior of a Nuclear Magnetic Resonance Gyroscope
    Cipolletti, Riccardo
    Riedrich-Moeller, Janine
    Fuchs, Tino
    Wickenbrock, Arne
    Budker, Dmitry
    2021 IEEE SENSORS, 2021,
  • [2] Nuclear Magnetic Resonance Gyroscope
    Larsen, Michael
    Bulatowicz, Michael
    2012 IEEE INTERNATIONAL FREQUENCY CONTROL SYMPOSIUM (FCS), 2012,
  • [3] Advances in nuclear magnetic resonance gyroscope
    Chen Y.
    Liu Z.-C.
    Liu G.
    Kongzhi Lilun Yu Yingyong/Control Theory and Applications, 2019, 36 (07): : 1017 - 1023
  • [4] THE NUCLEAR-MAGNETIC-RESONANCE GYROSCOPE - A REVIEW
    WOODMAN, KF
    FRANKS, PW
    RICHARDS, MD
    JOURNAL OF NAVIGATION, 1987, 40 (03): : 366 - 384
  • [5] A CRYOGENIC NUCLEAR MAGNETIC-RESONANCE GYROSCOPE
    POTTS, SP
    PRESTON, J
    JOURNAL OF NAVIGATION, 1981, 34 (01): : 19 - 37
  • [6] Laser Source for a Compact Nuclear Magnetic Resonance Gyroscope
    Maleev N.A.
    Blokhin S.A.
    Bobrov M.A.
    Kuz’menkov A.G.
    Kulagina M.M.
    Ustinov V.M.
    Maleev, N.A. (maleev@beam.ioffe.ru), 2018, Pleiades journals (09) : 177 - 182
  • [7] Experimental optimization of atomic magnetometer in nuclear magnetic resonance gyroscope
    Zhang, Ke
    Luo, Zhihuang
    Tang, Feng
    Zhao, Nan
    Wang, Yanhua
    JAPANESE JOURNAL OF APPLIED PHYSICS, 2020, 59 (03)
  • [8] Noise Suppression for the Differential Detection in Nuclear Magnetic Resonance Gyroscope
    Yang, Dan
    Zhou, Binquan
    Chen, LinLin
    Jia, YuChen
    Lu, QiLin
    AOPC 2017: OPTOELECTRONICS AND MICRO/NANO-OPTICS, 2017, 10460
  • [9] Nuclear Magnetic Resonance Gyroscope Developing a Primary Rotation Sensor
    Bevan, Dennis
    Bulatowicz, Michael
    Clark, Philip
    Flicker, Julia
    Griffith, Robert
    Larsen, Michael
    Luengo-Kovac, Marta
    Pavell, James
    Rothballer, Ashley
    Sakaida, Daryl
    Burke, Elliot
    Campero, Juan
    Ehrsam, Brian
    Estrella, Steven
    Morrison, Gordon
    2018 5TH IEEE INTERNATIONAL SYMPOSIUM ON INERTIAL SENSORS & SYSTEMS (INERTIAL 2018), 2018, : 171 - 172
  • [10] Asymmetry of EPR signal response in nuclear magnetic resonance gyroscope
    Yu Zai-Yang
    Zheng Jin-Tao
    Zhang Yang
    Wang Zhi-Guo
    Sun Hui
    Xiong Zhi-Qiang
    Luo Hui
    ACTA PHYSICA SINICA, 2022, 71 (22)