IP Library › Granted Patent US 7,521,936
Granted Patent B2
US 7,521,936 · App. 11/634,597 · Granted Apr 21, 2009

Diagnostic system for power converter

Assignee: Harman International Industries, Incorporated
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Quick Facts
Patent No.
US 7,521,936
App. No.
11/634,597
Granted
Apr 21, 2009
Kind
B2
Abstract

A power converter system that includes a diagnostic system is presented. One example of a power converter system is an audio amplifier system, such as a switch mode amplifier. The diagnostic system in the power converter may collect data indicative of signals in the power converter system and analyze the collected data. The collection and analysis of the data may be user defined (such as multiple measurements taken over a predetermined period) or may be defined by operation of the power converter system (such as an overcurrent or voltage clipping in the power converter system). The analysis of the collected data may be used to determine one or more potential problems in the power converter system, and to modify operation of the power converter system.

Claims (54)

1. A power converter system comprising:

a power conversion circuit having a plurality of signals; and

a diagnostic system that operates in a burst mode to execute multiple measurements indicative of a selected one of the plurality of signals during a burst cycle and that analyzes the multiple measurements, where the diagnostic system includes a data acquisition system adapted to provide a measured signal indicative of the selected signal, and where the data acquisition system comprises a memory storage, said memory storage further comprising a register that is programmable to select which of the plurality of signals are measured.

2. The power converter system of claim 1 , further comprising a power amplification system, and where the power conversion circuit comprises a power amplification channel.

3. The power converter of claim 1 , where the diagnostic system measures an attenuated signal corresponding to at least one of the plurality of signals.

4. The power converter system of claim 1 , wherein the power conversion circuit comprises multiple audio amplification channels, and the data acquisition system multiplexes signals for at least two of the audio amplification channels for measurement.

5. The power converter system of claim 1 , where the diagnostic system statistically analyzes the measured signal.

6. The power converter system of claim 1 , where the diagnostic system analyzes the multiple measurements to determine a maximum value of the selected signal during the burst cycle.

7. The power converter system of claim 1 , where the diagnostic system analyzes the multiple measurements to determine a minimum value of the selected signal during the burst cycle.

8. The power converter system of claim 1 , where the diagnostic system analyzes the multiple measurements in order to determine an average of the selected signal during the burst cycle.

9. The power converter system of claim 1 , where a duration of the burst cycle is programmable.

10. The power converter system of claim 1 , where the power conversion circuit is a pulse width modulated audio amplifier.

11. The power converter system of claim 1 , where the data acquisition system comprises:

an analog multiplexor receiving signals indicative of the plurality of signals for selective provision at an output of the analog multiplexor; and

an analog to digital converter to convert a signal corresponding to the output of the analog multiplexor to a digital value.

12. The power converter system of claim 11 , further comprising a filter disposed in a signal path between the output of the analog multiplexor and an input of the analog to digital converter.

13. The power converter system of claim 1 , where the data acquisition system memory storage further comprises an acquisition control register that is programmable to select which of the plurality of signals are to be selected for measurement.

14. The power converter system of claim 13 , where the acquisition control register is further programmable to set a duration of the burst cycle.

15. The power converter system of claim 1 , where the diagnostic system further comprises an overcurrent detection circuit that detects overcurrent events occurring on at least one of the plurality of signals.

16. The power converter system of claim 15 , where the memory storage register of the data acquisition system comprises a total overcurrent count register to store a value corresponding to a total number of overcurrent events detected on the at least one of the plurality of signals.

17. The power converter system of claim 16 , where the memory storage register of the data acquisition system further comprises:

a positive overcurrent count register to store a value corresponding to a total number of positive overcurrent events detected on the at least one of the plurality of signals; and

a negative overcurrent count register to store a value corresponding to a total number of negative overcurrent events detected on the at least one of the plurality of signals.

18. The power converter system of claim 16 , where the memory storage register of the data acquisition system further comprises an excess overcurrent count signal for comparison with the total overcurrent count register to provide an indication of an occurrence of an excess number of overcurrent events.

19. The power converter system of claim 1 , where the diagnostic system further comprises an overvoltage detection circuit to detect clipping events occurring on at least one of the plurality of signals.

20. The power converter system of claim 19 , where the memory storage register of the data acquisition system comprises a total clipping count register to store a value corresponding to a total number of clipping events detected on the at least one of the plurality of signals.

21. The power converter system of claim 20 , where the overvoltage detection circuit further comprises an excess clipping count signal arranged with respect to the total clipping count register to provide an indication of an occurrence of an excess number of clipping events.

22. The power converter system of claim 1 , where the diagnostic system uses the analysis of the multiple measurements to diagnose a problem with the power converter.

23. The power converter system of claim 22 , where the diagnostic system modifies operation of at least a part of the power conversion circuit based on the diagnosis of the problem.

24. A power converter system comprising:

an audio amplifier circuit having a plurality of signals; and

a diagnostic system comprising a data acquisition system to provide a measured signal corresponding to at least one of the plurality of signals, where the diagnostic system statistically analyzes the measured signal based on a comparison of the measured signal with a first signal corresponding to a battery voltage used to provide power for the audio amplifier, and comparison of the measured signal with a second signal corresponding to a ground voltage of the audio amplifier.

25. The power converter system of claim 24 , where the diagnostic system statistically analyzes the measured signal indicative of when at least a part of the audio amplifier is saturated, and where the saturation of at least a part of the audio amplifier circuit comprises an overcurrent event.

26. The power converter system of claim 24 , wherein the diagnostic system comprises window detectors for determining whether the measured signal is within a predetermined battery voltage window and within a predetermined ground voltage window.

27. The power converter system of claim 26 , where the statistical analysis comprises counting a number of times when the measured signal is within the predetermined battery voltage window and within the predetermined ground voltage window.

28. The power converter system of claim 26 , where the diagnostic system determines whether at least one of the plurality of signals is shorted to a battery or shorted to ground.

29. The power converter system of claim 25 , where the statistical analysis comprises counting a number of overcurrent events.

30. The power converter system of claim 29 , where the statistical analysis comprises counting positive and negative supply overcurrents separately.

31. A power converter system comprising:

a power conversion circuit having a plurality of signals;

a diagnostic system operating in a burst mode to execute multiple measurements indicative of a selected one of the plurality of signals during a burst cycle, and further operating to analyze the multiple measurements, where the diagnostic system includes a data acquisition system, and where the data acquisition system comprises an analog multiplexor receiving signals indicative of the plurality of signals for selective provision at an output of the analog multiplexor,

an analog to digital converter to convert a signal corresponding to the output of the analog multiplexor to a digital value, and

a filter disposed in a signal path between the output of the analog multiplexor and an input of the analog to digital converter.

32. A power converter system comprising:

a power conversion circuit having a plurality of signals; and

a diagnostic system operating in a burst mode to execute multiple measurements indicative of a selected one of the plurality of signals during a burst cycle, and further operating to analyze the multiple measurements, where the diagnostic system comprises an overcurrent detection circuit to detect overcurrent events occurring on the selected signal, and memory storage to store a value corresponding to a total number of overcurrent events detected on the selected signal.

33. The system of claim 32 , where the memory storage comprises a total overcurrent count register.

34. The system of claim 33 , where the memory storage register of the data acquisition system comprises:

a positive overcurrent count register to store a value corresponding to a total number of positive overcurrent events detected on the selected signal; and

a negative overcurrent count register to store a value corresponding to a total number of negative overcurrent events detected on the selected signal.

35. The system of claim 33 , where the memory storage register of the data acquisition system further comprises an excess overcurrent count register adapted for comparison with the total overcurrent count register to provide an indication of an occurrence of an excess number of overcurrent events.

36. A power converter system comprising:

a power conversion circuit having a plurality of signals; and

a diagnostic system operating in a burst mode to execute multiple measurements indicative of a selected one of the plurality of signals during a burst cycle, the diagnostic system comprising a data acquisition system adapted to store a count of a number of times that the selected signal reaches a predetermined state, and where the diagnostic system is adapted to indicate an error of the selected signal by comparing the count with a predetermined count value.

Assignments (5)
RELEASE Recorded Nov 14, 2012
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: HARMAN INTERNATIONAL INDUSTRIES, INCORPORATED; HARMAN BECKER AUTOMOTIVE SYSTEMS GMBH
Reel/Frame 029294/0254 →
SECURITY AGREEMENT Recorded Feb 17, 2011
From: HARMAN INTERNATIONAL INDUSTRIES, INCORPORATED; HARMAN BECKER AUTOMOTIVE SYSTEMS GMBH
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 025823/0354 →
RELEASE Recorded Feb 15, 2011
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: HARMAN INTERNATIONAL INDUSTRIES, INCORPORATED; HARMAN BECKER AUTOMOTIVE SYSTEMS GMBH
Reel/Frame 025795/0143 →
SECURITY AGREEMENT Recorded May 8, 2009
From: HARMAN INTERNATIONAL INDUSTRIES, INCORPORATED; BECKER SERVICE-UND VERWALTUNG GMBH; CROWN AUDIO, INC.; HARMAN BECKER AUTOMOTIVE SYSTEMS (MICHIGAN), INC.; HARMAN BECKER AUTOMOTIVE SYSTEMS HOLDING GMBH; HARMAN BECKER AUTOMOTIVE SYSTEMS, INC.; HARMAN CONSUMER GROUP, INC.; HARMAN DEUTSCHLAND GMBH; HARMAN FINANCIAL GROUP LLC; HARMAN HOLDING GMBH & CO. KG; HARMAN MUSIC GROUP, INCORPORATED; HARMAN SOFTWARE TECHNOLOGY INTERNATIONAL BETEILIGUNGS GMBH; HARMAN SOFTWARE TECHNOLOGY MANAGEMENT GMBH; HBAS INTERNATIONAL GMBH; HBAS MANUFACTURING, INC.; INNOVATIVE SYSTEMS GMBH NAVIGATION-MULTIMEDIA; JBL INCORPORATED; LEXICON, INCORPORATED; MARGI SYSTEMS, INC.; QNX SOFTWARE SYSTEMS (WAVEMAKERS), INC.; QNX SOFTWARE SYSTEMS CANADA CORPORATION; QNX SOFTWARE SYSTEMS CO.; QNX SOFTWARE SYSTEMS GMBH; QNX SOFTWARE SYSTEMS GMBH & CO. KG; QNX SOFTWARE SYSTEMS INTERNATIONAL CORPORATION; QNX SOFTWARE SYSTEMS, INC.; XS EMBEDDED GMBH (F/K/A HARMAN BECKER MEDIA DRIVE TECHNOLOGY GMBH)
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 022659/0743 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 6, 2007
From: STANLEY, GERALD R.
To: HARMAN INTERNATIONAL INDUSTRIES, INCORPORATED
Reel/Frame 018973/0111 →
Continuity (2)
Provisional Application 6074276200 · Dec 6, 2005
Related Publication 20070153780A1 · Jul 5, 2007