Permanent magnet motor model prediction control method with fixed switching frequency

A model predictive control, permanent magnet motor technology, applied in motor control, motor generator control, AC motor control, etc., can solve the problem of FCS-MPC switching frequency is not fixed, etc., to achieve the advantages of output filter design, reduce switching Loss, fast dynamic response effect

Active Publication Date: 2021-12-10
SOUTHWEST JIAOTONG UNIV
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Problems solved by technology

[0005] Aiming at the above-mentioned deficiencies in the prior art, the present invention provides a model predictive control method for a permanent magnet motor with a fixed switching frequency, which solves the problem that the switching frequency of the existing FCS-MPC is not fixed, making it more suitable for high-power permanent magnet motors At the same time, it can ta

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  • Permanent magnet motor model prediction control method with fixed switching frequency
  • Permanent magnet motor model prediction control method with fixed switching frequency
  • Permanent magnet motor model prediction control method with fixed switching frequency

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[0056] The specific embodiments of the present invention are described below so that those skilled in the art can understand the present invention, but it should be clear that the present invention is not limited to the scope of the specific embodiments. For those of ordinary skill in the art, as long as various changes Within the spirit and scope of the present invention defined and determined by the appended claims, these changes are obvious, and all inventions and creations using the concept of the present invention are included in the protection list.

[0057] like figure 1 As shown, the embodiment of the present invention provides a permanent magnet motor model predictive control method with a fixed switching frequency, including the following steps S1 to S4:

[0058] S1. Establish the mathematical model of the permanent magnet motor and its drive conversion system, and obtain the current of the motor, the voltage value of the DC bus side and the output voltage value of t...

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Abstract

The invention discloses a permanent magnet motor model prediction control method with a fixed switching frequency. The method comprises the following steps: building a mathematical model of a permanent magnet motor and a driving converter system of the permanent magnet motor, and obtaining the current of the motor, a DC bus side voltage value, and an inverter output voltage value; establishing a discretization stator current prediction model under a rotating coordinate system, and predicting the current value of the motor at the next moment after performing one-step compensation on the system time delay; establishing a switching period discretization model equivalent to the switching frequency of the IGBT, counting switching actions of the device, and predicting a switching period value; and establishing a total cost function, determining a switching state, and outputting and controlling on and off of an inverter switching tube. Switching signals are not generated through modulation, the control structure is simple, the operation load is low, the effects of constant switching frequency and neutral point potential balance are achieved at the same time, the control effect can be globally optimal, and the permanent magnet motor can have low torque ripple and high dynamic response at the same time during operation.

Description

technical field [0001] The invention relates to the technical field of permanent magnet motor control, in particular to a model predictive control method for a permanent magnet motor with a fixed switching frequency. Background technique [0002] The continuous innovation of the traction system is the key to the technological progress of rail trains, and it is also an important and difficult point to realize the autonomy of high-speed rail technology. The traction system is the "heart" of a high-speed train, and its performance determines the starting, braking and maximum speed of the train. Green and high efficiency is the eternal goal of the development of rail transit traction systems. Compared with asynchronous motor traction systems, in recent years, permanent magnet synchronous motors (Permanent Magnet Synchronize Motor, PMSM) have low loss, high efficiency, low noise, and high power density. , good starting characteristics, strong acceleration ability and other advan...

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Application Information

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IPC IPC(8): H02P21/14H02P21/20H02P21/22H02P25/022H02P27/12
CPCH02P21/14H02P21/22H02P21/20H02P25/022H02P27/12H02P2207/05
Inventor 徐帅马光同孙振耀任冠州姚春醒张晗
Owner SOUTHWEST JIAOTONG UNIV
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