IP Library Granted Patent US 9,304,177
Granted Patent B2
US 9,304,177 · App. 13/849,306 · Granted Apr 5, 2016

Movable coil scanner systems and methods

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Quick Facts
Patent No.
US 9,304,177
App. No.
13/849,306
Granted
Apr 5, 2016
Kind
B2
Abstract

A system, such as a magnetic immunity testing system, can include a first coil configured to generate a first magnetic field. The first coil can be disposed on a first side of a scanning volume and can have a first feed for supplying electric current to the first coil. A second coil can be similarly configured on an opposite side of a scanning volume, and a second magnetic field from the second coil can be combined with the first magnetic field to form a combined magnetic field. The coils can be provided with transporters that translate coils in at least one dimension. The system can also include a controller that is configured to control the transporters and the feeds to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume.

Claims (138)

1. A system, comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil;

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field;

a first transporter configured to translate the first coil in at least one dimension;

a second transporter configured to translate the second coil in at least one dimension;

a controller, wherein the controller is configured to control the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume; and

a first secondary coil on the first side.

2. The system of claim 1 , further comprising:

a first plurality of secondary coils on the first side.

3. A system, comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil;

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field;

a first transporter configured to translate the first coil in at least one dimension;

a second transporter configured to translate the second coil in at least one dimension;

a controller, wherein the controller is configured to control the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume; and

a second secondary coil on the second side.

4. The system of claim 3 , further comprising:

a second plurality of secondary coils on the second side.

5. A system, comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil;

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field;

a first transporter configured to translate the first coil in at least one dimension;

a second transporter configured to translate the second coil in at least one dimension;

a controller, wherein the controller is configured to control the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume; and

a plurality of shaping coils configured to shape the combined magnetic field.

6. The system of claim 5 , wherein at least one of the shaping coils is provided on-axis with respect to the combined magnetic field and at least one of the shaping coils is provided off-axis with respect to the combined magnetic field.

7. A system, comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil;

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field;

a first transporter configured to translate the first coil in at least one dimension;

a second transporter configured to translate the second coil in at least one dimension;

a controller, wherein the controller is configured to control the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume; and

a first rail configured to support the first transporter.

8. A system, comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil;

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field;

a first transporter configured to translate the first coil in at least one dimension;

a second transporter configured to translate the second coil in at least one dimension;

a controller, wherein the controller is configured to control the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume; and

a second rail configured to support the second transporter.

9. A system, comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil;

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field;

a first transporter configured to translate the first coil in at least one dimension;

a second transporter configured to translate the second coil in at least one dimension;

a controller, wherein the controller is configured to control the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume; and

wherein the coils of the system are configured in a non-Helmoltz coil configuration.

10. A system, comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil;

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field;

a first transporter configured to translate the first coil in at least one dimension;

a second transporter configured to translate the second coil in at least one dimension;

a controller, wherein the controller is configured to control the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume; and

wherein the scanning volume is from 100 to 1000 cubic feet.

11. A system, comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil;

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field;

a first transporter configured to translate the first coil in at least one dimension;

a second transporter configured to translate the second coil in at least one dimension;

a controller, wherein the controller is configured to control the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume; and

wherein the first transporter is configured to translate the first coil in three dimensions and to rotate the first coil in three axes.

12. A system, comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil;

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field;

a first transporter configured to translate the first coil in at least one dimension;

a second transporter configured to translate the second coil in at least one dimension;

a controller, wherein the controller is configured to control the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume; and

wherein the second transporter is configured to translate the second coil in three dimensions and to rotate the second coil in three axes.

13. A system, comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil;

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field;

a first transporter configured to translate the first coil in at least one dimension;

a second transporter configured to translate the second coil in at least one dimension;

a controller, wherein the controller is configured to control the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume; and

a platform configured to receive a test subject within the scanning volume, wherein the platform is under the scanning volume.

14. The system of claim 13 , wherein the platform comprises a chassis dynamometer or lift.

15. The system of claim 14 , wherein the dynamometer is configured to permit the vehicle to run while staying within the system.

16. A system, comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil;

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field;

a first transporter configured to translate the first coil in at least one dimension;

a second transporter configured to translate the second coil in at least one dimension;

a controller, wherein the controller is configured to control the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume; and

an array of free space field sensors, wherein the controller is configured to control the magnetic field based on feedback from the sensors.

17. A system, comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil;

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field;

a first transporter configured to translate the first coil in at least one dimension;

a second transporter configured to translate the second coil in at least one dimension;

a controller, wherein the controller is configured to control the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume; and

wherein the controller is further configured to control the polarity of the magnetic field.

18. A system, comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil;

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field;

a first transporter configured to translate the first coil in at least one dimension;

a second transporter configured to translate the second coil in at least one dimension;

a controller, wherein the controller is configured to control the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume; and

wherein the controller is further configured to control the magnetic field based on sensing an electric current supplied to the first coil and the second coil.

19. The system of claim 10 , wherein the first coil and the second coil are connected in series.

20. The system of claim 10 , further comprising:

an amplifier provided at an input to the first coil or the second coil.

21. The system of claim 10 , wherein a cross-section of the first coil or the second coil in the axis of a magnetic field is square.

22. A system, comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil;

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field;

a first transporter configured to translate the first coil in at least one dimension;

a second transporter configured to translate the second coil in at least one dimension;

a controller, wherein the controller is configured to control the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume; and

wherein a cross-section of the first coil or the second coil in the axis of a magnetic field is oval.

23. A system, comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil;

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field;

a first transporter configured to translate the first coil in at least one dimension;

a second transporter configured to translate the second coil in at least one dimension;

a controller, wherein the controller is configured to control the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume; and

wherein the first coil or the second coil is configured to be reconfigurable or separable.

24. A system, comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil;

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field;

a first transporter configured to translate the first coil in at least one dimension;

a second transporter configured to translate the second coil in at least one dimension;

a controller, wherein the controller is configured to control the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume; and

wherein the controller is configured to maintain a predetermined degree of flatness of the combined magnetic field.

25. A method, comprising:

positioning a vehicle on a stationary platform within a scanner, the scanner comprising:

a first coil configured to generate a first magnetic field, wherein the first coil is disposed on a first side of a scanning volume and wherein the first coil comprises a first feed for supplying electric current to the first coil,

a second coil configured to generate a second magnetic field, wherein the second coil is disposed opposite the first coil on a second side of the scanning volume opposite the first side, wherein the second coil comprises a second feed for supplying electric current to the second coil, and wherein the first magnetic field and second magnetic field combine to form a combined magnetic field,

a first transporter configured to translate the first coil in at least one dimension, and

a second transporter configured to translate the second coil in at least one dimension; and

scanning a scanning volume including the vehicle, wherein the scanning comprises controlling the first transporter, the second transporter, the first feed, and the second feed to provide the combined magnetic field as a controlled and calibrated magnetic field over the scanning volume.

26. The method of claim 25 , further comprising:

maintaining the vehicle and platform stationary during the scanning.

27. The method of claim 25 , further comprising:

receiving feedback from an array of free space field sensors, wherein the controlling the magnetic field is based on the feedback.

28. The method of claim 25 , further comprising:

monitoring current into the first coil and the second coil, wherein the controlling the magnetic field is based on the monitored current.

29. The method of claim 25 , further comprising:

evaluating magnetic immunity of the vehicle after the scanning is complete, while the scanning is on-going, or both.

Assignments (2)
CHANGE OF ADDRESS Recorded Jun 12, 2013
From: TDK CORPORATION
To: TDK CORPORATION
Reel/Frame 030651/0687 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2013
From: SUTTON, ROBERT
To: TDK CORPORATION
Reel/Frame 030072/0006 →