EP0201872A2

Flux-weakening regime operation of an interior permanent magnet sychronous motor.

Abstract

The operation of an interior permanent magnet synchronous motor is extended to the constant horsepower regime by causing the stator current vector to follow the voltage-limit ellipse in the counter-clockwise direction. The error between commanded stator current and actual stator current is determined to signal a saturation of the inverter and the commanded stator current is modified to reduce the error.

EP0201872A2, drawing sheet 1
Sheet 1 of 14

Term

Term ended

Projected expiry passed 7 May 2006, 20.4 years ago.

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17 claims: 3 independent, 14 dependent

  1. 1
    A method for constant horsepower operation of an interior permanent magnet motor synchronous drive system, said system including a current regulated PWM inverter wherein actual stator current in the motor is controlled according to a commanded stator current at a prescribed angle in relation to the quadrature axis of said rotor, said method comprising the steps of:comparing commanded stator current with actual stator current to obtain a difference signal indicative of said inverter being saturated;integrating said difference signal to provide an error compensation signal;and modifying said commanded stator current such that the angle between commanded stator current and said rotor quadrature axis is increased according to said error compensation signal, so that said difference signal is reduced to substantially zero.
  2. 5
    An apparatus for providing constant horsepower operation of an interior permanent magnet motor synchronous drive system, said drive system including an interior permanent magnet motor; position means connected to said motor for providing signals proportional to shaft position and rotor speed; a PWM current regulated inverter coupled to said motor; control means coupled to said position means and responsive to a speed request signal for providing a commanded stator current having a D-axis component aligned with the direct axis of the rotor of said motor and a Q-axis component aligned with the quadrature axis of said rotor, said control means generating said commanded stator current which in constant torque operation provides the minimum current for the instantaneous torque; and a rotor to stator coordinate transformer connected to said position means and coupling said control means to said inverter; said apparatus comprising:comparison means adapted to be coupled to said control means and to the output of said inverter for compar- in g said D-axis component of said commanded stator current with the D-axis component of actual stator current;a controller block coupled to said comparison means for generating an error compensation signal;and modifying means coupled to said controller block and adapted to be coupled to said coordinate transformer for increasing the angle between said commanded stator current and said quadrature axis depending on said error compensation signal.
  3. 11
    ' An interior permanent magnet motor synchronous drive system comprising:an interior permanent magnet motor;position means connected to said motor for providing signals proportional to shaft position and rotor speed;a PWM current regulated inverter coupled to said motor;control means coupled to said position means and responsive to a speed request signal for providing a commanded stator current having a D-axis component aligned with the direct axis of the rotor of said motor and a Q-axis component aligned with the quadrature axis of said rotor, said control means generating said commanded stator current which in constant torque operation provides the minimum current for the instantaneous torque;a rotor to stator coordinate transformer connected to said position means and coupling said control means to said inverter;comparison means coupled to said control means and to the output of said inverter for comparing said D-axis component of said commanded stator current with the D-axis component of actual stator current;a controller block coupled to said comparison means for generating an error compensation signal;and modifying means coupled to said controller block and to said coordinate transformer for increasing the angle between said commanded stator current and said quadrature axis depending on said error compensation signal.