IP Library Granted Patent US 8,599,078
Granted Patent B1
US 8,599,078 · App. 13/154,973 · Granted Dec 3, 2013

Near-field RF current probe system for a floating buoyant cable antenna

Inventor: Paul M. Mileski (Mystic, CT)
Assignee: The United States of America as represented by the Secretary of Navy
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Quick Facts
Patent No.
US 8,599,078
App. No.
13/154,973
Granted
Dec 3, 2013
Kind
B1
Abstract

A current probe system includes a toroid made from a magnetic material and a wire made from an electrically-conducting material that forms at least one winding about a portion of the toroid. A current is induced in the winding(s) when a time-varying magnetic field is present in the toroid. A float coupled to the toroid floats the system at a water's surface. In use, a buoyant cable antenna is fed through the toroid and the system is moved along the antenna.

Claims (37)

1. A current probe system comprising:

a toroid made from a magnetic material, said toroid surrounding a spatial region;

a wire made from an electrically-conducting material, said wire forming at least one winding about a portion of said toroid, wherein a current is induced in said at least one winding when a time-varying magnetic field is present in said spatial region; and

a float coupled to said toroid and adapted to float at a water's surface.

2. A current probe system as in claim 1 , further comprising:

a transformer mounted on said float and coupled to said wire; and

an electric signal carrying cable coupled to said transformer.

3. A current probe system as in claim 1 , further comprising a wireless transmitter mounted on said float and coupled to said wire for wirelessly transmitting information indicative of said current so-induced.

4. A current probe system as in claim 1 , further comprising a recorder mounted on said float and coupled to said wire for recording information indicative of said current so-induced.

5. A current probe system as in claim 1 , further comprising means coupled to said float for moving said float along the water's surface.

6. A current probe system as in claim 1 , further comprising a tether line coupled to said float.

7. A current probe system as in claim 1 , wherein said float defines a conduit leading to and from said spatial region of said toroid.

8. A current probe system as in claim 1 , further comprising a conduit made from non-magnetic and non-electrically conducting material, said conduit leading to and a passing through said spatial region of said toroid and extending away from said toroid.

9. A current probe system as in claim 1 , further comprising means made from a non-magnetic and non-electrically conducting material and coupled to said float, said means defining a first path leading to said spatial region and second path leading away from said spatial region.

10. A current probe system comprising:

a toroidal coil having a toroidal core made from a magnetic material and a wire coil made from an electrically-conducting material forming at least one winding about a portion of said core, wherein a current is induced in said at least one winding when a time-varying magnetic field is present in said toroidal core; and

a float coupled to said toroidal coil and adapted to float at a water's surface while maintaining said toroidal coil above the water's surface and approximately perpendicular thereto.

11. A current probe system as in claim 10 , further comprising:

a transformer mounted on said float and coupled to said wire coil; and

a coaxial cable coupled to said transformer.

12. A current probe system as in claim 10 , further comprising a wireless transmitter mounted on said float and coupled to said wire coil for wirelessly transmitting information indicative of said current so-induced.

13. A current probe system as in claim 10 , further comprising a recorder mounted on said float and coupled to said wire coil for recording information indicative of said current so-induced.

14. A current probe system as in claim 10 , further comprising means coupled to said float for moving said float along the water's surface.

15. A current probe system as in claim 10 , further comprising a tether line coupled to said float.

16. A current probe system as in claim 10 , wherein said float defines a conduit leading to and from said core, said conduit defining a path there through that is substantially parallel to the water's surface when said float is at the water's surface.

17. A current probe system as in claim 10 , further comprising a conduit made from non-magnetic material, said conduit extending through and away from said core, said conduit defining a path there through that is substantially parallel to the water's surface when said float is at the water's surface.

18. A current probe system as in claim 10 , further comprising means made from a non-magnetic material and coupled to said float, said means defining a first path leading to said core and a second path leading away from said core, said first path and said second path being substantially parallel to the water's surface when said float is at the water's surface arranged so as to minimally disturb the floating antenna.

19. A current probe system comprising:

a toroid made from a magnetic material, said toroid surrounding a spatial region;

a wire made from an electrically-conducting material, said wire forming at least one winding about a portion of said toroid, wherein a current is induced in said at least one winding when a time-varying magnetic field is present in said spatial region;

a float coupled to said toroid and adapted to float at a water's surface; and

a data interface mounted on said float and coupled to said wire for transmitting information indicative of said current so-induced.

20. A current probe system as in claim 19 , further comprising:

a means coupled to said float for moving said float along the water's surface;

a tether line coupled to said float, wherein said float defines a conduit leading to and from said spatial region of said toroid;

a conduit made from non-magnetic material, said conduit leading to and a passing through said spatial region of said toroid and extending away from said toroid; and

a means made from a non-magnetic material and coupled to said float, said means defining a first path leading to said spatial region and second path leading away from said spatial region.

Assignments (1)
CONFIRMATORY LICENSE Recorded Jun 9, 2011
From: MILESKI, PAUL M.
To: THE UNITED STATES OF AMERICA
Reel/Frame 026423/0342 →