IP Library Granted Patent US 9,927,473
Granted Patent B2
US 9,927,473 · App. 14/387,806 · Granted Mar 27, 2018

Method for checking an exciting current of a synchronous machine in generator operation

Inventors: Jie Ge (Stuttgart-Hausen, DE); Paul Mehringer (Stuttgart, DE)
Assignees: ROBERT BOSCH GMBH; SEG AUTOMOTIVE GERMANY GMBH
G01R25/00G01R31/343G01R35/00H02P9/48G01R1/203G01R31/2829H02P29/0241
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Quick Facts
Patent No.
US 9,927,473
App. No.
14/387,806
Granted
Mar 27, 2018
Kind
B2
Abstract

The method includes operating the synchronous machine in idle operation; recording a phase voltage measured value of the synchronous machine; ascertaining a phase voltage expected value by allocating stored characteristics map values for the phase voltage, for the exciting current and the recorded rotational speed of the synchronous machine; and comparing the phase voltage expected value to the phase voltage measured value. Also described is a diagnostic device for carrying out this method, as well as a corresponding computer program product.

Claims (26)

1. A method for checking a current sensor for an exciting current measurement of a synchronous machine in generator operation having a regulated exciting current, the method comprising:

operating the synchronous machine in idling operation of the synchronous machine;

recording a phase voltage measured value of the synchronous machine during idling of the synchronous machine, and recording the exciting current;

ascertaining a phase voltage expected value by allocating stored characteristics map values for the phase voltage, for the recorded exciting current, and for the recorded rotational speed of the synchronous machine; and

comparing the phase voltage expected value to the phase voltage measured value;

wherein, when the comparison shows that the phase voltage measured value lies within the value interval between a lower and an upper boundary value, no fault signal is generated, and a fault signal is generated if the phase voltage measured value lies outside this value interval.

2. The method of claim 1 , wherein the stored characteristics map values for the phase voltage, the exciting current and the rotational speed of the synchronous machine are ascertained before the initial start-up during idling of the synchronous machine.

3. The method of claim 1 , wherein a monitoring window is formed, having a lower and an upper boundary value, for the phase voltage expected value.

4. The method of claim 1 , wherein recording the phase voltage measured value includes an analog/digital conversion of measured values for the phase voltage.

5. A diagnostic device for checking a current sensor for an exciting current measurement of a synchronous machine having a regulated exciting current, comprising:

a control device for operating the synchronous machine in an idling operation of the synchronous machine;

an input interface, which is connected to a voltage sensor for transmitting a phase voltage measured value, ascertained during idling of the synchronous machine and which is connected to a current sensor for transmitting a measured value for the exciting current, and which is connected to a rotational speed sensor for transmitting a measured value for the rotational speed;

a memory, in which characteristics map values for the phase voltage, the exciting current and the rotational speed of the synchronous machine are stored;

an ascertaining device, which is connected to the input interface for reading in the measured values for the exciting current and the measured values for the rotational speed, and which is connected to the memory for reading out the characteristics map values, to ascertain a phase voltage expected value by allocating characteristics map values stored in the memory for the phase voltage, for the exciting current and for the rotational speed of the synchronous machine; and

a comparator device, which is connected to the input interface for transmitting the phase voltage measured value, and is connected to the ascertaining device for reading in the phase voltage expected value, to compare the phase voltage expected value to the phase voltage measured value;

wherein, when the comparison shows that the phase voltage measured value lies within the value interval between a lower and an upper boundary value to generate no fault signal, and to generate a fault signal if the phase voltage measured value lies outside this value interval.

6. The diagnostic device of claim 5 , wherein the characteristics map values are stored in the memory for the phase voltage, the exciting current and the rotational speed of the synchronous machine which were ascertained before the initial start-up during idling of the synchronous machine.

7. The diagnostic device of claim 5 , wherein the ascertaining device is configured to form a monitoring window having a lower and an upper boundary value for the phase voltage expected value.

8. The diagnostic device of claim 5 , wherein the ascertaining device has an analog/digital converter for the analog/digital conversion of the measured values for the phase voltage.

9. A non-transitory computer readable medium having a computer program, which is executable by a processor, comprising:

a program code arrangement having program code for checking a current sensor for an exciting current measurement of a synchronous machine in generator operation having a regulated exciting current, by performing the following:

operating the synchronous machine in idling operation of the synchronous machine;

recording a phase voltage measured value of the synchronous machine ( 2 ) during idling of the synchronous machine, and recording the exciting current;

ascertaining a phase voltage expected value by allocating stored characteristics map values for the phase voltage, for the recorded exciting current and for the recorded rotational speed of the synchronous machine; and

comparing the phase voltage expected value to the phase voltage measured value;

wherein, when the comparison shows that the phase voltage measured value lies within the value interval between a lower and an upper boundary value, no fault signal is generated, and a fault signal is generated if the phase voltage measured value lies outside this value interval.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2017
From: ROBERT BOSCH GMBH
To: ROBERT BOSCH GMBH; SEG AUTOMOTIVE GERMANY GMBH
Reel/Frame 044957/0853 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2014
From: GE, JIE; MEHRINGER, PAUL
To: ROBERT BOSCH GMBH
Reel/Frame 034428/0393 →
Priority Claims (1)
DE 10 2012 204 751 · Mar 26, 2012 · national
Continuity (1)
Related Publication 20150091606A1 · Apr 2, 2015