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One-phase open-circuit fault-tolerant direct thrust control method for five-phase permanent magnet linear motor

A permanent magnet linear motor and thrust control technology, applied in linear motor control, motor control, direct torque control, etc., can solve the problems of unequal output phase current amplitude, disordered inverter switching frequency, and thrust/torque ripple Large and other problems, to achieve the effect of improving sine degree, increasing complexity and reducing iron consumption

Inactive Publication Date: 2019-12-31
JIANGSU UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0004] In view of the deficiencies in the existing motor fault-tolerant control technology, as well as the characteristics of the five-phase permanent magnet linear motor controlled by the present invention and the open circuit fault characteristics of this type of motor, the purpose of the present invention is to overcome the existing one-phase open circuit fault of the five-phase linear motor. The fault-tolerant strategy uses methods such as the traditional Clarke transformation matrix, hysteresis comparator, and switch table, resulting in unequal output phase current amplitudes, large thrust / torque ripple, disordered switching frequency of the inverter, poor motor control accuracy, severe noise, and dynamic Due to the shortcomings of poor performance, there is no fault-tolerant direct thrust control strategy suitable for five-phase permanent magnet linear motors at present. The present invention proposes a fault-tolerant direct thrust control method for five-phase permanent magnet linear motors under the condition of one-phase open-circuit fault. It can not only achieve high fault tolerance performance, high dynamic performance, excellent thrust and speed following performance of this type of motor system in the state of one-phase open circuit fault, but also reduce the complexity of the control algorithm and the overhead of the controller CPU, and can also Realize constant inverter switching frequency, equal motor output phase current amplitude, reduce motor noise and simplify electromagnetic compatibility design, and finally achieve high reliability, high steady-state performance and high dynamic performance

Method used

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  • One-phase open-circuit fault-tolerant direct thrust control method for five-phase permanent magnet linear motor

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Embodiment Construction

[0042] In order to more simply and clearly illustrate the characteristics and beneficial effects of the fault-tolerant direct thrust control strategy of the five-phase permanent magnet linear motor of the present invention, a specific five-phase permanent magnet fault-tolerant linear motor will be described in detail and completely below.

[0043] Such as figure 1 As shown, the structure schematic diagram of the five-phase permanent magnet fault-tolerant cylindrical linear motor of the embodiment of the present invention, the winding of the motor is placed on the stator; the permanent magnet is located on the mover, and each permanent magnet is isolated by a magnetic material, and installed in the form of a spoke On the mover, it can generate large thrust and small positioning force; the fractional slot single-layer concentrated winding is adopted, and the winding coil is located on both sides of the armature teeth, which improves the sinusoidal degree of the back EMF and impro...

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Abstract

The invention discloses a one-phase open-circuit fault-tolerant direct thrust control method of a five-phase permanent magnet linear motor. Firstly, the generalized Clarke transformation matrix and its inverse matrix are deduced according to the fault-tolerant phase current; on this basis, the stator flux linkage on α-β is derived, and the stator virtual flux linkage is defined according to the requirements of the circular stator flux linkage trajectory, and then deduced Voltage compensation on α‑β; the actual voltage of the stator on α‑β is obtained by the modulation function of the voltage source inverter, and the voltage is combined with voltage compensation and stator current to obtain the stator virtual Flux linkage and thrust; then calculate the stator virtual target voltage according to the given thrust, given stator flux amplitude, observed stator virtual flux linkage and thrust; finally calculate the actual stator voltage by the voltage and voltage compensation, the voltage The motor is controlled via a voltage source inverter. The invention not only suppresses the thrust fluctuation caused by motor failure, but more importantly, its dynamic performance and steady-state performance are consistent with those under normal conditions.

Description

technical field [0001] The invention relates to a direct thrust fault-tolerant control method for a one-phase open-circuit fault of a linear motor, especially a direct thrust fault-tolerant control method for a five-phase permanent magnet linear motor, which can be applied in aerospace, electric vehicles, etc., which have strict requirements on the reliability and dynamic performance of the motor. Where required. Background technique [0002] With the progress of the times and the improvement of science and technology and living standards, users have higher and higher requirements for vehicles, especially for the safety, reliability and comfort of driving. The performance of the automobile suspension system is of great significance to the driving performance of the automobile, so the research on the steady-state and dynamic performance of the active suspension system has received more and more attention. The cylindrical linear motor is a key component of the active suspensi...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02P25/06H02P29/028H02P29/024H02P23/30
CPCH02P25/06H02P23/30H02P29/0243H02P29/032H02P25/22H02P29/028H02P6/006H02P21/141H02P27/06H02P21/30
Inventor 周华伟周城刘国海张多
Owner JIANGSU UNIV
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