A control method for maximum torque-current ratio of built-in permanent magnet synchronous motor

A permanent magnet synchronous motor, maximum torque current technology, applied in motor generator control, electronic commutation motor control, control system and other directions, can solve problems such as slow convergence speed, poor convergence performance and dynamic performance, and poor dynamic performance , to achieve the effect of improving dynamic performance, fast MTPA control, and improving startup performance

Active Publication Date: 2022-06-21
DALIAN MARITIME UNIVERSITY
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This method has slow convergence speed, poor dynamic performance, and low torque control accuracy under the influence of torque disturbance and current / voltage harmonics
The high-frequency signal injection method processes and calculates the injected high-frequency signal and the response signal, extracts the MTPA criterion, and finally obtains the current or angle reference value, but its convergence performance and dynamic performance are poor
The virtual signal injection method superimposes a small-amplitude high-frequency sinusoidal component in the feedback current signal, and analyzes the inner relationship between the electromagnetic torque and the current vector angle by means of Taylor series expansion, and then configures a reasonable low-pass, The angle information corresponding to the MTPA control current can be extracted by using the cutoff frequency of the band-pass filter, but the use of the filter will cause a phase delay

Method used

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  • A control method for maximum torque-current ratio of built-in permanent magnet synchronous motor
  • A control method for maximum torque-current ratio of built-in permanent magnet synchronous motor
  • A control method for maximum torque-current ratio of built-in permanent magnet synchronous motor

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Embodiment Construction

[0062] In order to make the technical solutions and advantages of the present invention clearer, the technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present invention:

[0063] like figure 1 As shown, the present invention discloses a method for controlling the maximum torque-current ratio of a built-in permanent magnet synchronous motor, which specifically includes the following steps:

[0064] S1: According to the mathematical model of the built-in permanent magnet synchronous motor and the Lagrange extreme value theorem, the dq-axis current formula is derived;

[0065] S2: Further simplify according to the dq axis current relationship, and redefine a variable i K , derive the dq-axis current and i K The relationship between;

[0066] S3: According to the mathematical model of the built-in permanent magnet synchronous motor in the synchronou...

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Abstract

The invention discloses a method for controlling the maximum torque-to-current ratio of a built-in permanent magnet synchronous motor, comprising: adopting a simple MTPA formula method, which can calculate the dq-axis reference current based on a constant parameter model in real time without mathematical approximation or lookup table. In addition, the virtual square wave signal is injected into the feedback current, and the MTPA criterion is extracted through the difference of the mechanical power before and after a square wave cycle, and the current deviation caused by the parameter change is corrected, without considering the influence of the real high frequency signal injected into the motor , without considering the impact of the filter on the dynamic performance of the system. Simulation results show that even though R and L d The change of will cause a certain Δi derror , but the combination of the formula method and the virtual square wave injection method can still track the MTPA trajectory more accurately. robustness.

Description

technical field [0001] The invention relates to the technical field of motor control, in particular to a method for controlling the maximum torque-current ratio of a built-in permanent magnet synchronous motor. Background technique [0002] The built-in permanent magnet synchronous motor has the advantages of high efficiency, large power factor, high unit power density and fast dynamic response speed, and has been widely used in the field of electric propulsion ships, new energy vehicles, and household appliances. [0003] The performance characteristic of the built-in permanent magnet synchronous motor is asymmetric inductance, so compared with the surface-mounted permanent magnet synchronous motor, the built-in permanent magnet synchronous motor not only contains the same excitation torque, but also includes reluctance torque, electromagnetic The torque is related to the d-axis current, and the reluctance torque is related to both the d and q-axis currents. The use of zero...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02P21/22H02P21/14
CPCH02P21/22H02P21/14
Inventor 刘彦呈郭昊昊孟兵兵张珍睿张勤进于春来
Owner DALIAN MARITIME UNIVERSITY
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