The invention relates to a spherical feedback tricomponent fluxgate magnetic full-tenser
gradiometer. Three mutually perpendicular crossed enameled wire winding slots are carved on the surface of a spherical non-conductive material, and more than three tricomponent fluxgate sensors are mounted in the sphere and connected with a triaxial spherical feedback coil to form a
closed loop through a
control circuit so as to further form the tricomponent fluxgate magnetic full-tenser
gradiometer. Compared with the prior art, the
uniform field generated by the spherical coil is larger than that generated by other feedback coils; under the same uniformity, the spherical feedback coil occupies the minimum volume; the plurality of fluxgate sensors are placed in one triaxial spherical coil, the fluxgate is in a stable working state in the environment close to zero
magnetism, so that mutual interference of the feedback coils during feedback of each fluxgate is avoided, the calibration is facilitated, the baseline distance is greatly shortened, and the
system precision is improved. The spherical feedback tricomponent fluxgate magnetic full-tenser
gradiometer is particularly suitable for being used in aeronautical,
aerospace and other space-limited environments and has a wider application range.