Magnetic compensation circuit and method for compensating the output of a magnetic sensor, responding to changes in a first magnetic field
US-9389281-B2 · Jul 12, 2016 · US
US10023280B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10023280-B2 |
| Application number | US-201314436808-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 23, 2013 |
| Priority date | Oct 18, 2012 |
| Publication date | Jul 17, 2018 |
| Grant date | Jul 17, 2018 |
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A device for winding and unwinding a cable including a winch comprises a chassis, an electric motor for driving a drum in rotation in relation to the chassis, locking/unlocking means comprising a first induction coil and configured such as to immobilize the drum in relation to the chassis when the first coil is not being powered electrically, the device including a second induction coil that is powered electrically, dimensioned and arranged such that the magnetic field generated by the assembly formed by the first and second coils, when the first coil is powered electrically, is less than the magnetic field generated by the first coil at a point located at a distance from the winch that is greater than a predetermined threshold, the electrical energizing and de-energizing of the second coil being synchronized with the electrical energizing and respectively de-energizing of the first coil.
Opening claim text (preview).
The invention claimed is: 1. A device for winding and unwinding a cable, comprising: a winch comprising a chassis, drive means and a drum, wherein the drive means include an electric motor used to drive a drum in rotation in relation to the chassis, and means for locking/unlocking rotation of the drum in relation to the chassis to prevent and permit rotation of the drum in relation to the chassis, the locking/unlocking means including a first induction coil being a locking/unlocking coil, the locking/unlocking means being designed to immobilize the drum in relation to the chassis when the locking/unlocking coil is not powered electrically, the device also including a second induction coil, being a feedback coil, said feedback coil being powered electrically, and dimensioned and designed such that the magnetic field produced by an assembly formed by the locking/unlocking coil and the feedback coil, when the locking/unlocking coil is powered electrically, is less than the magnetic field generated by the locking/unlocking coil at a point located at a predetermined distance from the winch, the electrical energizing and de-energizing of the feedback coil being synchronized with the electrical energizing and respectively de-energizing of the locking/unlocking coil. 2. The device as claimed in claim 1 , wherein the feedback coil and the locking/unlocking coil are powered by a same generator. 3. The device as claimed in claim 2 , wherein the feedback coil is mounted in series with the locking/unlocking coil. 4. The device as claimed in claim 2 , wherein the product N1*S1 is substantially equal to the product N2*S2, wherein N1 is the number of turns in the locking/unlocking coil, N2 is the number of turns in the feedback coil, S1 is the surface area of the turns of the locking/unlocking coil and S2 is the surface area of the turns of the feedback coil. 5. The device as claimed in claim 1 , comprising a first generator for electrically powering the locking/unlocking coil and a second generator for electrically powering the feedback coil, the device including means for synchronizing the electrical energizing and de-energizing of the feedback coil with the electrical energizing and respectively de-energizing of the locking/unlocking coil. 6. The device as claimed in claim 1 , wherein the feedback coil is arranged such that a first current flowing through the locking/unlocking coil and a second current flowing through the feedback coil flow counterclockwise. 7. The device as claimed in claim 6 , wherein the locking/unlocking coil and feedback coil are coaxial. 8. The device as claimed in claim 1 , wherein the feedback coil is dimensioned and arranged such as not to disturb operation of the locking/unlocking means. 9. The device as claimed in claim 8 , wherein the feedback coil and the locking/unlocking coil are spaced along an axis of the locking/unlocking coil. 10. The device as claimed in claim 1 , wherein a section of the conducting wire forming the winding of the feedback coil, the length of same and the material from which same is made are chosen such that the resistance of the feedback coil is at least 10 times less than the resistance of the locking/unlocking coil. 11. The device as claimed in claim 1 , including means for at least partially compensating, at a point located away from the vicinity of the winch, the magnetic field generated by the permanent residual magnetization of the winch resulting from the electrical powering of the locking/unlocking coil and the feedback coil, used to release the drum without exerting any braking torque on same. 12. The device as claimed in claim 11 , wherein the means for at least partially compensating, at a point located away from the vicinity of the winch, the magnetic field generated by the permanent residual magnetization of the winch resulting from the electrical powering of the locking/unlocking coil and the feedback coil, used to release the drum without exerting any braking torque include a set of at least one permanent magnet. 13. The device as claimed in claim 12 , wherein at least one permanent magnet of the set of at least one permanent magnet has a north-south axis parallel to an axis of the locking/unlocking coil. 14. The device as claimed in claim 11 , including a third coil assembled to be powered permanently by a supplementary generator able to generate a direct current, the third coil being dimensioned and arranged such as to compensate at least partially, at a point located away from the vicinity of the winch, for the magnetic field generated by the permanent residual magnetization of the winch caused by the electrical powering of the locking/unlocking coil and the feedback coil, used to release the drum without exerting any braking torque on same. 15. Mine warfare equipment including a mine warfare ship carrying a device as claimed in claim 1 , said device also including said cable and a mine warfare device. 16. Mine warfare equipment as claimed in claim 15 , wherein the mine warfare device comprises at least one of a sonar and a device for simulating a magnetic and/or acoustic signature. 17. The device as claimed in claim 1 , the device being configured to be carried on board a mine warfare ship. 18. The device as claimed in claim 17 , comprising the cable and a mine warfare device comprising at least one of a sonar and a device for simulating a magnetic and/or acoustic signature, the mine warfare device being intended to be towed by the mine warfare ship by means of the cable.
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