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Field weakening control of PMSM used in an electric power steering system

机译:电动助力转向系统中PMSM的弱磁控制

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Presently, the direct current motor is widely used as an actuator in electric power steering system (EPS) for compact cars. When it comes to mid-size saloons, the permanent magnet synchronous motor (PMSM) is more suitable for numerical advantages. To acquire the smooth steering feeling, the motor's torque and speed should match well. However, the rated speed of the motor used in EPS is usually round 1000r/min, while under the condition of fast operating steering wheel the motor speed may be higher than 2500r/min. Therefore, it is necessary to carry out field weakening control of PMSM. In most cases, the stator's resistance is ignored when the field weakening control strategy is carried out. However, the stator's resistance should be taken into consideration in EPS application for high current and low voltage. This paper proposes a novel field weakening law of PMSM with consideration of motor stator resistance. The proposed law is verified by experiments on EPS test bench. And it is found that the heavy steering feeling problem under the fast operating steering wheel condition is solved by using the field weakening law proposed in this paper.
机译:当前,直流电动机被广泛用作紧凑型汽车的电动助力转向系统(EPS)的致动器。对于中型轿车,永磁同步电动机(PMSM)更适合于数值优势。为了获得平稳的转向感觉,电动机的转矩和速度应匹配良好。但是,EPS中使用的电动机的额定速度通常约为1000r / min,而在快速操作方向盘的情况下,电动机速度可能会高于2500r / min。因此,有必要进行PMSM的弱磁控制。在大多数情况下,当执行弱磁控制策略时,定子的电阻会被忽略。但是,在大电流和低电压的EPS应用中,应考虑定子的电阻。考虑电机定子电阻,提出了一种新型的永磁同步电机弱磁场定律。通过在EPS测试台上的实验验证了所提出的规律。通过使用本文提出的磁场弱化定律,可以解决在快速操作方向盘条件下较重的转向感问题。

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