Electric-vehicle control device
US-9586484-B2 · Mar 7, 2017 · US
US9855858B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9855858-B2 |
| Application number | US-201615054680-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 26, 2016 |
| Priority date | Sep 3, 2013 |
| Publication date | Jan 2, 2018 |
| Grant date | Jan 2, 2018 |
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Official abstract text for this publication.
A control device includes an ECU and an inverter device having power circuitry including an inverter and a motor control unit. A rotation angle sensor detects a rotation angle of a motor. The power circuitry receives a rotation angle of the motor from the rotation angle sensor to perform control in accordance with the rotation angle of the rotor, the control being based on a torque command mapping table in which a relationship between a rotation speed and a torque of the motor is defined. The power circuitry includes an adjustment module adjusting the torque command mapping table with respect to a torque command from the ECU and a speed of the electric vehicle.
Opening claim text (preview).
What is claimed is: 1. A control device for an electric vehicle having a motor and a rotation angle sensor, the control device comprising: an electric control unit (ECU) configured to perform general control of the electric vehicle; and an inverter device including having power circuitry including an inverter configured to convert a DC power into an AC power used to drive the motor and a motor control unit configured to control the power circuitry in accordance with a torque command from the ECU, wherein the motor control unit is configured to receive a rotation angle of a rotor of the motor from the rotation angle sensor to perform control in accordance with the rotation angle of the rotor, the control being based on a torque command mapping table in which a command value is determined based on a rotation speed and a torque of the motor, and the motor control unit includes a torque command mapping table adjustment module configured to adjust the torque command mapping table, according to a predetermined rule, with respect to; a speed of the vehicle obtained by a vehicle speed detection module based on the rotation angle that is detected by the rotation angle sensor, and the torque command from the ECU, the vehicle includes a plurality of the motors which independently drive left and right wheels, and the motor control unit is provided for each of the motors, and when the torque command mapping table adjustment module adjusts the torque command mapping table for one of the motors, the one of the motors is torque controlled by the motor control unit associated with the one of the motors and the other motor is rotation-speed controlled. 2. The control device for the electric vehicle as claimed in claim 1 , wherein the motor control unit includes a motor drive command voltage mapping table in which a phase command voltage with respect to a rotation speed and a torque of the motor is defined, and the torque command mapping table adjustment module extracts a phase command voltage for the one of the motors from the motor drive command voltage mapping table in a state where the one of the motors rotates at a constant motor rotation speed, and adjusts the torque command mapping table in such a way that the extracted phase command voltage is equivalent to a phase drive voltage. 3. The control device for the electric vehicle as claimed in claim 2 , wherein the torque command mapping table adjustment module adjusts the torque command mapping table such that, if an absolute value of subtracting the phase drive voltage from the phase command voltage is less than a predetermined threshold, the torque command mapping table adjustment module determines that the phase command voltage is equivalent to the phase drive voltage. 4. The control device for the electric vehicle as claimed in claim 1 , wherein the motor drives any one or both of a front wheel and a rear wheel of the vehicle and constitutes a part of an in-wheel motor drive device which includes the motor, a wheel bearing, and a reducer.
by comparing mechanical values representing the speeds · CPC title
Wheel Hub motors, i.e. integrated in the wheel hub · CPC title
using field orientation; Vector control; Direct Torque Control [DTC] · CPC title
characterised by AC-motors · CPC title
by self learning · CPC title
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