IP Library Granted Patent US 9,590,548
Granted Patent B2
US 9,590,548 · App. 14/669,802 · Granted Mar 7, 2017

Method and apparatus for regulating an output voltage of an alternator

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Quick Facts
Patent No.
US 9,590,548
App. No.
14/669,802
Granted
Mar 7, 2017
Kind
B2
Abstract

A method of regulating an output voltage of an alternator. The method comprises measuring first and second external contacts of the alternator regulator module operably coupled to first and second output contacts of the alternator respectively during an ON state of an excitation cycle for the alternator, measuring a second voltage across the first and second external contacts of the alternator regulator module during an OFF state of an excitation cycle for the alternator, deriving an average voltage value of the first and second voltage measurements, and deriving an offset value based at least partly on the derived average voltage value. The method further comprises measuring an instantaneous voltage across the first and second external contacts of the alternator regulator module, and configuring a control signal for regulating the output voltage of the alternator based at least partly on the instantaneous voltage measurement and the derived offset value.

Claims (45)

1. A method of regulating an output voltage of an alternator, the method comprising, within an alternator regulator module:

measuring a first voltage across a first external contact of the alternator regulator module operably coupled to a first output contact of the alternator and a second external contact of the alternator regulator module operably coupled to a second output contact of the alternator during an ON state of an excitation cycle for the alternator;

measuring a second voltage across the first external contact of the alternator regulator module and the second external contact of the alternator regulator module during an OFF state of an excitation cycle for the alternator;

deriving an average voltage value of the first and second voltage measurements; and

deriving an offset value based at least partly on the derived average voltage value,

wherein the method further comprises:

measuring an instantaneous voltage across the first external contact of the alternator regulator module and the second external contact of the alternator regulator module; and

configuring a control signal for regulating the output voltage of the alternator based at least partly on the instantaneous voltage measurement and the derived offset value.

2. The method of claim 1 , wherein the method comprises measuring the first voltage across the first and second external contacts of the alternator regulator module during an ON state of an excitation cycle for the alternator, and measuring the second voltage across the first and second external contacts of the alternator regulator module during an OFF state of an excitation cycle for the alternator adjacent the ON state during which the first voltage measurement is obtained.

3. The method of claim 1 , wherein the method comprises applying the derived offset value to the instantaneous voltage measurement and configuring the control signal for regulating the output voltage of the alternator based at least partly on the offset instantaneous voltage measurement.

4. The method of claim 1 , wherein the method comprises deriving the offset value based on a magnitude of a difference between the derived average voltage value and at least one of:

the first voltage measurement across the first external contact of the alternator regulator module and the second external contact of the alternator regulator module; and

the second voltage measurement across the first external contact of the alternator regulator module and the second external contact of the alternator regulator module.

5. The method of claim 1 , wherein the method comprises:

negating the derived offset value;

configuring the control signal for regulating the output voltage of the alternator based at least partly on the instantaneous voltage measurement and the non-negated derived offset value when the instantaneous voltage is measured during one of an ON state and an OFF state of an excitation cycle for the alternator; and

configuring the control signal for regulating the output voltage of the alternator based at least partly on the instantaneous voltage measurement and the negated derived offset value when the instantaneous voltage is measured during the other of an ON state and an OFF state of an excitation cycle for the alternator.

6. The method of claim 1 , wherein the first output contact of the alternator comprises a positive output voltage contact of the alternator and the second output contact of the alternator comprises a ground contact of the alternator.

7. The method of claim 1 , wherein the control signal for regulating the output voltage of the alternator comprises a control signal for controlling an excitation current provided to the alternator.

8. The method of claim 1 , wherein the control signal for regulating the output voltage of the alternator comprises a pulse width modulated control signal.

9. An alternator regulator module for regulating an output voltage of an alternator, the alternator regulator module comprising at least one control component arranged to:

receive an indication of a first voltage across a first external contact of the alternator regulator module operably coupled to a first output contact of the alternator and a second external contact of the alternator regulator module operably coupled to a second output contact of the alternator during an ON state of an excitation cycle for the alternator;

receive an indication of a second voltage across the first external contact of the alternator regulator module and the second external contact of the alternator regulator module during an OFF state of an excitation cycle for the alternator;

derive an average voltage value of the first and second voltages; and

derive an offset value based at least partly on the derived average voltage value,

wherein the at least one control component is further arranged to:

receive an indication of an instantaneous voltage across the first external contact of the alternator regulator module and the second external contact of the alternator regulator module; and

configure a control signal for regulating the output voltage of the alternator based at least partly on the instantaneous voltage and the derived offset value.

10. The alternator regulator module of claim 9 , wherein the at least one control component is arranged to receive the indication of the first voltage across the first and second external contacts of the alternator regulator module during an ON state of an excitation cycle for the alternator, and receive the indication of the second voltage across the first and second external contacts of the alternator regulator module during an OFF state of an excitation cycle for the alternator adjacent the ON state during which the indication of the first voltage is obtained.

11. The alternator regulator module of claim 9 , wherein the at least one control component is arranged to apply the derived offset value to the received indication of the instantaneous voltage across the first and second external contacts of the alternator regulator module and configure the control signal for regulating the output voltage of the alternator based at least partly on the offset instantaneous voltage indication.

12. The alternator regulator module of claim 9 , wherein the at least one control component is arranged to derive the offset value based on a magnitude of a difference between the derived average voltage value and at least one of:

the indication of the first voltage across the first external contact of the alternator regulator module and the second external contact of the alternator regulator module; and

the indication of the second voltage across the first external contact of the alternator regulator module and the second external contact of the alternator regulator module.

13. The alternator regulator module of claim 9 , wherein the at least one control component is arranged to:

negate the derived offset value;

configure the control signal for regulating the output voltage of the alternator based at least partly on the received indication of the instantaneous voltage across the first and second external contacts of the alternator regulator module and the non-negated derived offset value when the instantaneous voltage indication corresponds to one of an ON state and an OFF state of an excitation cycle for the alternator; and

configure the control signal for regulating the output voltage of the alternator based at least partly on the received indication of the instantaneous voltage across the first and second external contacts of the alternator regulator module and the negated derived offset value when the instantaneous voltage indication corresponds to the other of an ON state and an OFF state of an excitation cycle for the alternator.

14. The alternator regulator module of claim 9 , wherein the first output contact of the alternator comprises a positive output voltage contact of the alternator and the second output contact of the alternator comprises a ground contact of the alternator.

15. The alternator regulator module of claim 9 , wherein the control signal for regulating the output voltage of the alternator comprises a control signal for controlling an excitation current provided to the alternator.

16. The alternator regulator module of claim 9 , wherein the control signal for regulating the output voltage of the alternator comprises a pulse width modulated control signal.

17. The alternator regulator module of claim 9 , wherein the alternator regulator module further comprises at least one analogue to digital converter component arranged to receive an analogue voltage signal representative of a voltage across the first and second external contacts of the alternator regulator and to output a digital signal comprising an indication of the voltage across the first and second external contacts of the alternator regulator; and

the at least one control component comprises a digital control component arranged to receive the digital signal output by the at least one analogue to digital converter component.

18. The alternator regulator module of claim 9 , wherein the at least one control component comprises a low pass filter component arranged to derive the average voltage value of the first and second voltages.

19. The alternator regulator module of claim 9 , wherein the at least one control component comprises a control signal configuration component arranged to derive the offset value based at least partly on the derived average voltage value, and configure the control signal for regulating the output voltage of the alternator based at least partly on the instantaneous voltage and the derived offset value.

20. The alternator regulator module of claim 9 implemented within an integrated circuit device comprising at least one die within a single integrated circuit package.

Assignments (15)
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE APPLICATION 11759915 AND REPLACE IT WITH APPLICATION 11759935 PREVIOUSLY RECORDED ON REEL 040925 FRAME 0001. ASSIGNOR(S) HEREBY CONFIRMS THE RELEASE OF SECURITY INTEREST. Recorded Feb 17, 2020
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: NXP, B.V. F/K/A FREESCALE SEMICONDUCTOR, INC.
Reel/Frame 052917/0001 →
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVE APPLICATION 11759915 AND REPLACE IT WITH APPLICATION 11759935 PREVIOUSLY RECORDED ON REEL 040928 FRAME 0001. ASSIGNOR(S) HEREBY CONFIRMS THE RELEASE OF SECURITY INTEREST. Recorded Jan 17, 2020
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: NXP B.V.
Reel/Frame 052915/0001 →
RELEASE OF SECURITY INTEREST Recorded Sep 10, 2019
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: NXP B.V.
Reel/Frame 050744/0097 →
CORRECTIVE ASSIGNMENT TO CORRECT THE NATURE OF CONVEYANCE PREVIOUSLY RECORDED AT REEL: 040626 FRAME: 0683. ASSIGNOR(S) HEREBY CONFIRMS THE MERGER AND CHANGE OF NAME EFFECTIVE NOVEMBER 7, 2016. Recorded Jan 12, 2017
From: NXP SEMICONDUCTORS USA, INC. (MERGED INTO); FREESCALE SEMICONDUCTOR, INC. (UNDER)
To: NXP USA, INC.
Reel/Frame 041414/0883 →
CHANGE OF NAME Recorded Nov 16, 2016
From: FREESCALE SEMICONDUCTOR INC.
To: NXP USA, INC.
Reel/Frame 040626/0683 →
RELEASE OF SECURITY INTEREST Recorded Nov 7, 2016
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: NXP B.V.
Reel/Frame 040928/0001 →
RELEASE OF SECURITY INTEREST Recorded Sep 21, 2016
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: NXP, B.V., F/K/A FREESCALE SEMICONDUCTOR, INC.
Reel/Frame 040925/0001 →
SUPPLEMENT TO THE SECURITY AGREEMENT Recorded Jun 16, 2016
From: FREESCALE SEMICONDUCTOR, INC.
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 039138/0001 →
ASSIGNMENT AND ASSUMPTION OF SECURITY INTEREST IN PATENTS Recorded Jan 7, 2016
From: CITIBANK, N.A.
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 037458/0341 →
ASSIGNMENT AND ASSUMPTION OF SECURITY INTEREST IN PATENTS Recorded Jan 7, 2016
From: CITIBANK, N.A.
To: MORGAN STANLEY SENIOR FUNDING, INC.
Reel/Frame 037458/0359 →
PATENT RELEASE Recorded Dec 21, 2015
From: CITIBANK, N.A., AS COLLATERAL AGENT
To: FREESCALE SEMICONDUCTOR, INC.
Reel/Frame 037357/0974 →
SUPPLEMENT TO IP SECURITY AGREEMENT Recorded May 4, 2015
From: FREESCALE SEMICONDUCTOR, INC.
To: CITIBANK, N.A., AS NOTES COLLATERAL AGENT
Reel/Frame 035571/0095 →
SUPPLEMENT TO IP SECURITY AGREEMENT Recorded May 4, 2015
From: FREESCALE SEMICONDUCTOR, INC.
To: CITIBANK, N.A., AS NOTES COLLATERAL AGENT
Reel/Frame 035571/0112 →
SUPPLEMENT TO IP SECURITY AGREEMENT Recorded May 4, 2015
From: FREESCALE SEMICONDUCTOR, INC.
To: CITIBANK, N.A., AS NOTES COLLATERAL AGENT
Reel/Frame 035571/0080 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2015
From: SYNGAEVSKIY, VASILY ALEKSEYEVICH; SHUVALOV, DENIS SERGEEVICH; TRESHCHANOVSKIY, KIRILL ALEXANDROVICH
To: FREESCALE SEMICONDUCTOR, INC.
Reel/Frame 035266/0159 →