Electric vehicle
US-2024181894-A1 · Jun 6, 2024 · US
US9419550B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9419550-B2 |
| Application number | US-201414309162-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 19, 2014 |
| Priority date | Jun 24, 2013 |
| Publication date | Aug 16, 2016 |
| Grant date | Aug 16, 2016 |
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A method of controlling torque of a permanent magnet synchronous motor (PMSM) by using a speed-torque lookup table may include: receiving a current direct-current (DC) link voltage of an inverter configured to drive the PMSM and a speed of a rotor of the PMSM; calculating a change ratio of a DC link voltage based on the current DC link voltage and a DC link voltage at a time when the speed-torque lookup table is generated; calculating a normalized speed of the rotor according to a change in the DC link voltage by using the speed of the rotor and the change ratio of the DC link voltage; and/or transferring the normalized speed of the rotor as an input to the speed-torque lookup table.
Opening claim text (preview).
What is claimed is: 1. A method of controlling torque of a permanent magnet synchronous motor (PMSM) by using a speed-torque lookup table, the method comprising: receiving a current direct-current (DC) link voltage of an inverter configured to drive the PMSM and a speed of a rotor of the PMSM; calculating a change ratio of a DC link voltage based on the current DC link voltage and a DC link voltage at a time when the speed-torque lookup table is generated; adjusting the change ratio of the DC link voltage based on a voltage limiting circle when the voltage limiting circle of an inverter output voltage becomes smaller than a command voltage of a current controller configured to control a current applied to the PMSM; calculating a normalized speed of the rotor by dividing the speed of the rotor by the adjusted change ratio of the DC link voltage; and transferring the normalized speed of the rotor as an input to the speed-torque lookup table. 2. The method of claim 1 , wherein the adjusting the change ratio of the DC link voltage comprises adjusting the change ratio of the DC link voltage based on the command voltage of the current controller configured to control the current applied to the PMSM and a maximum inverter output voltage. 3. The method of claim 1 , wherein that the voltage limiting circle of the inverter output voltage becomes smaller than the command voltage of the current controller results from change in parameters of the PMSM, and wherein the parameters of the PMSM include inductances of the PMSM and magnetic interlinkage of a permanent magnet. 4. The method of claim 1 , wherein the adjusting the change ratio of the DC link voltage comprises: calculating a change ratio control value that limits the change ratio of the DC link voltage according to the change in the parameters of the PMSM; and adjusting the change ratio of the DC link voltage based on the calculated change ratio control value. 5. A computer readable recording medium having embodied thereon a program for executing the method of claim 1 . 6. The method of claim 4 , wherein the calculating the change ratio control value comprises: receiving a command voltage of a current controller, wherein the change in the parameters of the PMSM is reflected in the command voltage; calculating an amount of the command voltage; calculating a maximum inverter output voltage based on the current DC link voltage; calculating an error between the maximum inverter output voltage and the amount of the command voltage; and calculating the change ratio control value based on the error. 7. The method of claim 6 , wherein the calculating the change ratio control value comprises calculating the change ratio control value such that the error is compensated for by using a proportional integral (PI) controller. 8. The method of claim 6 , further comprising: adjusting the change ratio control value such that the change ratio of the DC link voltage is limited only when a voltage limiting circle of an inverter output voltage is smaller than the command voltage of the current controller; wherein the adjusting the change ratio of the DC link voltage comprises adjusting the change ratio of the DC link voltage based on the adjusted change ratio control value. 9. The method of claim 6 , wherein the calculating the maximum inverter output voltage comprises calculating the maximum inverter output voltage based on a maximum linear modulation range according to a space vector pulse width modulation (PWM) method of an inverter output voltage. 10. A controlling apparatus for controlling torque of a permanent magnet synchronous motor (PMSM), the controlling apparatus comprising: a speed normalization unit configured to normalize a speed of a rotor of the PMSM, and to output the normalized speed of the rotor; a command current obtaining unit configured to obtain a command current corresponding to the normalized speed of the rotor and a command torque by using a speed-torque lookup table; a current controller configured to generate a command voltage based on the command current, a current detected in the PMSM, and the speed of the rotor; and a pulse width modulation (PWM) control unit configured to determine an on/off duty ratio of a control pulse signal that controls an inverter output voltage based on the command voltage; wherein the speed normalization unit comprises: a change ratio calculation unit configured to calculate a change ratio of a direct-current (DC) link voltage based on an input current DC link voltage and a DC link voltage at a time when the speed-torque lookup table is generated; a change ratio control unit configured to output a change ratio control value such that the change ratio of the DC link voltage is limited only when a voltage limit circle of the inverter output voltage becomes smaller than the command voltage; and a speed calculation unit configured to calculate the normalized speed of the rotor, to adjust the change ratio of the DC link voltage based on the change ratio control value, and to calculate the normalized speed of the rotor by dividing the speed of the rotor by an adjusted change ratio of the DC link voltage. 11. The controlling apparatus of claim 10 , wherein that the voltage limit circle of the inverter output voltage becomes smaller than the command voltage of the current controller results from change in parameters of the PMSM, and wherein the parameters of the PMSM include inductances of the PMSM and magnetic interlinkage of a permanent magnet. 12. The controlling apparatus of claim 10 , wherein the change ratio control unit further comprises: a calculation unit configured to calculate an amount of the command voltage in which the change in parameters of the PMSM is reflected, configured to calculate a maximum inverter output voltage based on the current DC link voltage, and configured to calculate an error between the maximum inverter output voltage and the amount of the command voltage; and a limiter configured to adjust the change ratio control value to limit the change ratio of the DC link voltage only when a voltage limiting circle of the inverter output voltage is smaller than the amount of the command voltage; wherein the speed calculation unit is further configured to adjust the change ratio of the DC link voltage based on the adjusted change ratio control value. 13. The controlling apparatus of claim 10 , wherein the controlling apparatus is configured to generate the control pulse signal by using the normalized speed of the rotor in which the change of the DC link voltage and a change in parameters of the PMSM are reflected, and wherein the controlling apparatus is configured to output the control pulse signal to an inverter to control torque of the PMSM. 14. The controlling apparatus of claim 12 , wherein the calculation unit is further configured to calculate the maximum inverter output voltage based on a maximum linear modulation range according to a space vector PWM method of the inverter output voltage.
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