IP Library Granted Patent US 10,429,427
Granted Patent B2
US 10,429,427 · App. 13/816,307 · Granted Oct 1, 2019

Method and device for determining the state of an electrically controlled valve

Inventors: Sven Fink (Linden, DE); Matt Saterbak (Robbinsdale, MN)
Assignee: Danfoss Power Solutions GmbH & Co. OHG
G01R31/00G01R31/3275G01R31/3278H01H47/325G01R31/06
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Quick Facts
Patent No.
US 10,429,427
App. No.
13/816,307
Granted
Oct 1, 2019
Kind
B2
Abstract

The invention relates to a method ( 3 ) for determining ( 33 ) a state characteristic value ( 28 ) of a electric device ( 4 ) controlled by a temporally variable control signal ( 17 ). The at least one state characteristic value ( 28 ) is determined using the frequency of the temporally variable control signal ( 17 ) and/or the switching characteristics of the temporally variable control signal ( 17 ).

Claims (33)

1. A method for determining at least one state characteristic value of an electrical device comprising a microcontroller and a moveable subassembly actuated with a time-varying control signal generated by a control unit of the microcontroller, the method comprising:

wherein the time-varying control signal is determined by comparing a first signal indicating a desired value of the at least one state characteristic value with a second signal indicating a current value of the at least one state characteristic value,

wherein the at least one state characteristic value is determined by an evaluation unit of the microcontroller of the electrical device using at least one of the frequency of the time-varying control signal or the switching characteristics of the time-varying control signal, and

wherein the at least one state characteristic value includes a measure of a current position of the moveable subassembly and a velocity of the moveable subassembly as the moveable subassembly moves between a first position at a first time and a second position at a second time.

2. The method according to claim 1 , wherein the time-varying control signal is a pulselike control signal and/or a cyclical control signal, especially a pulse width modulated type control signal and/or a square-wave control signal.

3. The method according to claim 1 , wherein the moveable subassembly of the electrical device includes an induction mechanism.

4. The method according claim 1 , wherein the electrical device is operated in non-quasistationary and/or nonstationary mode.

5. The method according to claim 1 , wherein the at least one state characteristic value further constitutes a measure of reaching certain positions, especially prominent ones, of at least parts of the electrical device, and/or a measure of the occurrence of at least one error event.

6. The method according to claim 1 , wherein the electrical device is actuated with a maximum current limiting method.

7. The method according to claim 1 , wherein at least one electrical device, actuated with the time-varying control signal, is used for an electrically switched hydraulic pump and/or for an electrically switched hydraulic motor.

8. The method according to claim 1 , wherein the at least one state characteristic value is determined by a measurement of the absolute value of the switching frequency of the time-varying control signal and/or by a measurement of a change in the switching frequency of the time-varying control signal and/or by a measurement of the absolute value of the switching characteristics of the time-varying control signal and/or by a measurement of a change in the switching characteristics of the time-varying control signal.

9. An electrical device comprising:

a moveable subassembly configured to move between a first position and a second position; and

an electrical control device configured to actuate the moveable subassembly with a time-varying control signal;

wherein the electrical control device determines the time-varying control signal by comparing a first signal indicating a desired value of at least one state characteristic value of the electrical device with a second signal indicating a current value of the at least one state characteristic value;

wherein the electrical control device comprises an evaluation unit that determines the at least one state characteristic value of the electrical device by the time-varying control signal; and

wherein the at least one state characteristic value includes a measure of a current position of the moveable subassembly and a velocity of the moveable subassembly as the moveable subassembly moves between the first position at a first time and the second position at a second time.

10. The electrical device according to claim 9 , wherein the electrical control device is configured as a program-controlled computer mechanism.

11. An electrically switched hydraulic device comprising:

a moveable subassembly configured to move between a first position and a second position; and

an electrical control device configured to actuate the moveable subassembly with a time-varying control signal, the electrical control device comprising a first switching transistor actuated by a first control input to generate the time-varying control signal applied to the moveable subassembly, and a second switching transistor actuated by a second control input to control an on/off state of the moveable subassembly;

wherein the electrical control device determines the time-varying control signal by comparing a first signal indicating a desired value of at least one state characteristic value of the electrically switched hydraulic device with a second signal indicating a current value of the at least one state characteristic value;

wherein the electrical control device comprises an evaluation unit that determines the at least one state characteristic value of the electrically switched hydraulic device by the time-varying control signal; and

wherein the at least one state characteristic value includes a measure of a current position of the moveable subassembly and a velocity of the moveable subassembly as the moveable subassembly moves between the first position at a first time and the second position at a second time.

12. The method according to claim 2 , wherein the moveable subassembly of the electrical device includes an induction mechanism.

13. The method according claim 2 , wherein the electrical device is operated in non-quasistationary and/or nonstationary mode.

14. The method according claim 3 , wherein the electrical device is operated in non-quasistationary and/or nonstationary mode.

15. The method according to claim 2 , wherein the at least one state characteristic value further constitutes a measure of reaching certain positions, especially prominent ones, of at least parts of the electrical device, and/or a measure of the occurrence of at least one error event.

16. The method according to claim 3 , wherein the at least one state characteristic value further constitutes a measure of reaching certain positions, especially prominent ones, of at least parts of the electrical device, and/or a measure of the occurrence of at least one error event.

17. The method according to claim 4 , wherein the at least one state characteristic value further constitutes a measure of reaching certain positions, especially prominent ones, of at least parts of the electrical device, and/or a measure of the occurrence of at least one error event.

18. The method according to claim 2 , wherein the electrical device is actuated with a maximum current limiting method.

19. The method according to claim 3 , wherein the electrical device is actuated with a maximum current limiting method.

20. The method according to claim 4 , wherein the electrical device is actuated with a maximum current limiting method.

Assignments (2)
CHANGE OF NAME Recorded May 21, 2014
From: SAUER-DANFOSS GMBH & CO. OHG
To: DANFOSS POWER SOLUTIONS GMBH & CO. OHG
Reel/Frame 032971/0493 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 10, 2013
From: FINK, SVEN; SATERBAK, MATT
To: SAUER-DANFOSS GMBH & CO. OHG
Reel/Frame 030394/0916 →
Priority Claims (1)
DE 10 2010 036 941 · Aug 11, 2010 · national
Continuity (1)
Related Publication 20130169287A1 · Jul 4, 2013
Cited By (3)
US 12,280,681 US 12,662,014 US 12,710,333