Method for preventing takeoff of motor velocity for hybrid electric vehicle
View Patent ↗A method for preventing takeoff of a motor velocity of a hybrid electric vehicle, may include checking whether an engine clutch is disengaged while an engine and a motor are simultaneously driven, checking whether a command of motor torque is zero when the engine clutch is disengaged, and checking whether the motor velocity is normal while the command of the motor torque is zero, wherein when the motor velocity abnormally increases as a result of checking whether the motor velocity is normal, the motor torque is corrected to be zero.
1. A method for preventing takeoff of a motor velocity of a hybrid electric vehicle, the method comprising:
verifying when an engine clutch is disengaged while an engine and a motor are driven;
verifying when a command of motor torque is zero while the engine clutch is verified to be disengaged; and
verifying when the motor velocity is normal while the command of the motor torque is verified to be zero,
wherein, when the motor velocity abnormally increases while the motor velocity is verified to be normal, the motor torque of the motor is corrected to be zero.
2. The method of claim 1 , wherein when the motor velocity abnormally increases while the motor velocity is verified to be normal, a new resolver offset value is acquired.
3. The method of claim 2 , wherein the new resolver offset value is acquired by adding a predetermined resolver offset fluctuation value to an existing resolver offset value.
4. The method of claim 3 , wherein the motor velocity and a d-axis voltage command value are detected to determine the predetermined resolver offset fluctuation value according to the detected motor velocity and the detected d-axis voltage command value.
5. The method of claim 4 , wherein the d-axis voltage command value is determined based on the motor velocity according to an equation of:
Vd*=Rs*id−w*Lq*iq
wherein, Vd* is the d-axis voltage command, Rs is phase resistance of the motor, id is d-axis current, w is the motor velocity, Lq is d-axis inductance, and iq is q-axis current.