Claims
- 1. A diagnostic system for a polyphase electric motor comprising:
a first subsystem to determine current of each motor phase; a second subsystem to generate a first estimate of motor shaft position; a third subsystem to generate a first estimate of motor torque using the first subsystem and the first estimate of motor shaft position; a fourth subsystem to determine current of each motor phase; a fifth subsystem to generate a second estimate of motor shaft position; a sixth subsystem to generate a second estimate of motor torque, independent of the first estimate of motor torque, using the fourth subsystem and the second estimate of motor shaft position; and a comparator system to compare the first and second estimates of motor torque.
- 2. The diagnostic system according to claim 1 further comprising an operator notification system.
- 3. The diagnostic system according to claim 1, wherein the first subsystem comprises:
a first current sensor generating a first measured current of a first phase of the electric motor; a second current sensor generating a first measured current of a second phase of the electric motor; and a system to generate a first estimated current of a third phase of the electric motor based on the first measured current of the first phase and the first measured current of the second phase.
- 4. The diagnostic system according to claim 1 wherein the second subsystem is a first Kalman filter.
- 5. The diagnostic system according to claim 1 wherein the fourth subsystem comprises:
a third current sensor generating a second measured current of a first phase of the electric motor; a fourth current sensor generating a second measured current of a second phase of the electric motor; and a second system to generate a second estimated current of a third phase of the electric motor based on the second measured current of the first phase and the second measured current of the second phase.
- 6. The diagnostic system according to claim 1 wherein the fourth subsystem comprises:
a third current sensor generating a second measured current of a first phase of the electric motor; a fourth current sensor generating a first measured current of a third phase of the electric motor; and a system to generate an estimated current of the second phase of the electric motor based on the second measured current of the first phase and the first measured current of the third phase.
- 7. The diagnostic system according to claim 4 wherein the sixth subsystem is a second Kalman filter.
- 8. The diagnostic system of claim 1 wherein the fifth subsystem is a resolver.
- 9. A method to diagnose potential discrepancies in electrical operating characteristics in a polyphase electric motor comprising the steps of:
determining a first set of currents for each motor phase with n−1 sensors, where n is any number of phases greater than one; generating a first estimate of motor shaft position; generating a first estimate of motor torque using the first estimate of motor shaft position; determining a second set of currents for each motor phase using a number of current sensors from n to (2n−2); generating a second estimate of motor shaft position; generating a second estimate of motor torque, independent of the first estimate of motor torque, using the second estimate of motor shaft position; and comparing the first and second estimates of motor torque.
- 10. The method according to claim 9 further comprising the step of notifying a motor operator of a potential discrepancy in electrical operating conditions.
- 11. The method according to claim 9 wherein the step of determining a first set of currents for each motor phase comprises:
generating a first measured current of a first phase of the electric motor with a first current sensor; generating a first measured current of a second phase of the electric motor with a second current sensor; and generating a first estimated current of a third phase of the electric motor based on the first measured current of the first phase and the first measured current of the second phase.
- 12. The method according to claim 9 wherein the step of generating the first estimate of motor shaft position is accomplished by using a first Kalman filter.
- 13. The method according to claim 9 wherein the steps of determining sets of currents for each motor phase comprise:
generating a first set of measured currents of n−1 phases of the electric motor with n−1 current sensors; generating a second set of measured currents for n-1 phases of the electric motor with another set of n−1 current sensors; and generating two independent estimated currents of an nth phase of the electric motor based on n−1 measured currents from the first set and the second set of measured currents.
- 14. The method according to claim 12, wherein the step of generating the second estimate of motor shaft position is accomplished by using a second Kalman filter.
- 15. The method according to claim 9, wherein the step of generating a second estimate of motor shaft position is accomplished by using a resolver.
- 16. A controller in a system for diagnosing potential discrepancies in electrical operating conditions in a polyphase electric motor, the controller comprising:
a sub-system to determine current in each motor phase; a sub-system for generating a first estimate of motor shaft position; a sub-system for generating a first estimate of motor torque using the current in each motor phase and the first estimate of motor shaft position; a sub-system for generating a second estimate of motor torque using current in each motor phase and a second estimate of motor shaft position; and a sub-system for comparing the first and second estimates of motor torque for discrepancies whereby a motor operator can be notified of a potential discrepancy in electrical operating characteristics.
- 17. The diagnostic system set forth in claim 1 wherein the first and fourth subsystems include n−1 current sensors for each of two motor torque estimates, where n=the number of phases in the electric motor.
- 18. The method set forth in claim 9 wherein the step of determining current in each motor phase includes measuring current in each phase with n−1 current sensors, where n =the number of phases in the electric motor;
each step of generating independent estimates of motor torque comprising the use of n−1 current sensors for each torque estimate.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. application Ser. No. 10/644,382, filed Aug. 20, 2003, which is a continuation-in-part of application Ser. No. 10/063,345, filed Apr. 12, 2002, entitled “Diagnostic Method For An Electric Motor Using Torque Estimates”, now abandoned. These applications are owned by the assignee of this application.
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
10644382 |
Aug 2003 |
US |
Child |
10745276 |
Dec 2003 |
US |
Parent |
10063345 |
Apr 2002 |
US |
Child |
10644382 |
Aug 2003 |
US |