IP Library Granted Patent US 6,858,962
Granted Patent B2
US 6,858,962 · App. 09/946,250 · Granted Feb 22, 2005

Halbach array generator/motor having an automatically regulated output voltage and mechanical power output

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Quick Facts
Patent No.
US 6,858,962
App. No.
09/946,250
Granted
Feb 22, 2005
Kind
B2
Abstract

A motor/generator having its stationary portion, i.e., the stator, positioned concentrically within its rotatable element, i.e., the rotor, along its axis of rotation. The rotor includes a Halbach array. The stator windings are switched or commutated to provide a DC motor/generator much the same as in a conventional DC motor/generator. The voltage and power are automatically regulated by using centrifugal force to change the diameter of the rotor, and thereby vary the radial gap in between the stator and the rotating Halbach array, as a function of the angular velocity of the rotor.

Claims (55)

1. A motor/generator for regulating an output voltage or a mechanical power output, comprising:

a rotor including a Halbach array;

said rotor being capable of rotating at a variable angular velocity;

a stator including a plurality of electrically conductive windings;

a variable gap separating said rotor and said stator; and

means for adjusting said gap responsive to said angular velocity to automatically regulate an output voltage or a mechanical power output.

2. The motor/generator of claim 1 , wherein:

said means comprises a centrifugal force acting against said rotor and said rotor having a diameter that varies in response to said centrifugal force, whereby said gap varies in response to said centrifugal force.

3. The motor/generator of claim 2 , wherein:

said angular velocity has an operating range; and

said means maintains said output voltage at an approximately constant voltage value over said operating range.

4. The motor/generator of claim 2 , wherein:

said angular velocity has an operating range; and

said adjusting means maintains said mechanical power output at an approximately constant power value over said operating range.

5. The motor/generator of claim 2 , wherein:

said rotor is rotatable about an axis of rotation;

said stator is stationary relative to said axis of rotation;

said stator and said rotor are concentric, with said stator lying closer to said axis than said rotor; and

said gap varies radially relative to said axis of rotation.

6. The motor/generator of claim 5 , wherein:

said Halbach array comprises a plurality of magnets configured in a cylindrical shape, and has an inner surface and an outer surface, with said inner surface being closer to said axis of rotation than said outer surface; and

said rotor includes a cylinder attached to said outer surface.

7. The motor/generator of claim 6 , wherein said cylinder comprises a fiber composite.

8. The motor/generator of claim 6 , wherein:

each of said windings has an approximately rectangular shape including an inner section and an outer section, with said inner section being closer to said axis of rotation than said outer section; and

said gap being in between said inner surface of said Halbach array and said outer section of said windings.

9. The motor/generator of claim 8 , further comprising

a plane intersecting each winding of said windings, respectively, and said axis of rotation; and

each winding of said windings being azimuthally spaced apart from each other, whereby each winding of said windings are azimuthally disposed around said axis of rotation.

10. The motor/generator of claim 7 , wherein:

said Halbach array generates a magnetic field having a pole order;

said cylinder has a Young's modulus; and

said output voltage and said mechanical power output are also a function of said pole order and said Young's modulus.

11. The motor/generator of claim 10 , wherein said Halbach array includes a plurality of magnets equal to four times said pole order.

12. A method for automatically regulating an output voltage of a generator comprising:

generating an output voltage by rotating a rotor at a variable angular velocity with respect to a stator, wherein said rotor includes a Halbach array; and

varying a gap between said rotor and said stator responsive to said angular velocity.

13. The method of claim 12 , further comprising maintaining said output voltage at an approximately constant voltage value over an operating range of said angular velocity.

14. The method of claim 13 , wherein said gap is varied by radially translating said rotor relative to said stator by applying a centrifugal force to said rotor.

15. A method for automatically regulating a mechanical power output of a motor, comprising:

rotating a rotor at a variable angular velocity with respect to a stator by applying a variable voltage input to said stator, wherein said rotor includes a Halbach array; and

varying a gap between said rotor and said stator responsive to said angular velocity.

16. The method of claim 15 , further comprising maintaining said mechanical power output at an approximately constant power value over an operating range of said angular velocity.

17. The method of claim 16 , wherein said gap is varied by radially translating said rotor relative to said stator by applying a centrifugal force to said rotor.

18. A motor/generator for automatically regulating an output voltage or a mechanical power output, comprising:

a Halbach array being radially spaced apart from a stator by a variable gap and being rotatable relative to said stator at an angular velocity; and

said gap being automatically varied as a function of said angular velocity.

19. The motor/generator of claim 18 , further comprising:

a voltage being generated by rotation of said Halbach array at said angular velocity;

said angular velocity having a range; and

said gap being responsive to a centrifugal force generated by said angular velocity and maintaining an output voltage at an approximately constant voltage value over said angular velocity range.

20. The motor/generator of claim 18 , wherein:

said Halbach array is rotated at said angular velocity by an input voltage applied to said stator;

said input voltage has a range; and

said gap is responsive to a centrifugal force generated by said angular velocity and maintains said angular velocity at an approximately constant value over said input voltage range.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 11, 2012
From: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
To: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
Reel/Frame 028531/0178 →
CONFIRMATORY LICENSE Recorded Feb 12, 2002
From: CALIFORNIA, REGENTS OF THE UNIVERSITY OF
To: ENERGY, U.S. DEPARTMENT OF
Reel/Frame 012596/0108 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 5, 2001
From: POST, RICHARD F.
To: REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE
Reel/Frame 012161/0248 →