A drive control method for a three-phase single-winding bearingless motor

A bearingless motor, single-winding technology, used in AC motor control, control systems, electrical components, etc., can solve the problem of three-phase single-winding bearingless motor drive control that has not been reported, bearingless motors cannot achieve suspension operation, two sets of The winding angle is difficult to determine and other problems, to achieve the effects of excellent dynamic and static characteristics, simple structure and low cost

Active Publication Date: 2016-08-31
湖南凌翔磁浮科技有限责任公司
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AI Technical Summary

Problems solved by technology

At present, most of the bearingless motors adopt two sets of winding control modes of torque and suspension force, that is, the actual speed is obtained through the closed-loop detection of the speed, compared with the given speed, and the torque winding current for controlling the speed is obtained through the corresponding algorithm. The actual radial displacement is obtained through the closed-loop detection of the suspension force, compared with the given suspension force, and the current of the suspension force winding to control the suspension force is obtained through the corresponding algorithm. Obviously, the current control method is equivalent to the bearingless motor as two motors , using two sets of inverters to control two sets of windings respectively, this control method has the following serious shortcomings: the two sets of windings will be coupled to each other and affect each other, especially the angle between the two sets of windings is difficult to determine, Therefore, it will respond to the dynamic and static characteristics of the motor's levitation force, electromagnetic torque, and speed. If the angle between the two sets of windings is too large and exceeds a certain range, the bearingless motor will not be able to achieve levitation operation.
[0003] The single-winding bearingless motor is the latest research on a bearingless motor. The research reported so far is only the multi-phase single-winding bearingless permanent magnet motor, which uses different control free planes in the multi-phase motor to control the bearingless permanent magnet motor separately. The suspension and rotation of the three-phase single-winding bearingless motor drive control has not been reported so far

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  • A drive control method for a three-phase single-winding bearingless motor

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Embodiment Construction

[0015] see figure 1 , divide a set of armature windings of the three-phase single-winding bearingless motor 4 into three areas a, b, and c on average, and perform closed-loop control on the speed of the three-phase single-winding bearingless motor 4 to obtain a current signal , through the closed-loop control of the levitation force, three current signals are obtained , with ; respectively with , with Three sets of current control signals are formed, which pass through current controllers No. a, No. B and No. C respectively, and three inverters 313, 323 and 333 of No. a, No. b and No. The windings are independently controlled to realize the self-suspension and rotation of the rotor at the same time. The specific implementation steps are as follows:

[0016] 1) Use the x-direction displacement sensor 17 to detect the actual displacement value of the radial level of the rotor of the three-phase single-winding bearingless motor , using the y-direction displaceme...

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Abstract

The invention discloses a drive control method of a three-phase single-winding bearingless motor. The drive control method performs closed-loop control on the rotational speed to obtain a current signal of one circuit , through the closed-loop control of the levitation force, three current signals are obtained , and ; and then respectively with , and Three sets of current control signals are formed, which respectively pass through current controllers a, b and c to independently control the three areas a, b and c of a set of armature windings of a three-phase single-winding bearingless motor, and at the same time realize the rotor self-suspension and rotation. The invention overcomes the problem of the coupling relationship between the two sets of windings of the double-winding bearingless motor and the included angle between the two sets of windings, can effectively eliminate the coupling relationship between the torque and the suspension force, and improves the stability and reliability of the system.

Description

technical field [0001] The invention is a drive control method of a bearingless motor, more precisely, a drive control method of a single-winding bearingless motor, which is suitable for special electric drive fields such as aerospace, flywheel energy storage, and numerical control machine tools. Background technique [0002] Bearingless motors have the advantages of no friction and wear, no lubrication, high speed and high precision, high power density, and maintenance-free. In addition to high-speed operation fields such as flywheel energy storage and CNC machine tools, they are also used in pure clean rooms, vacuum technology, and corrosive media. , And special fields such as aseptic workshops also have broad application prospects. At present, most of the bearingless motors adopt two sets of winding control modes of torque and suspension force, that is, the actual speed is obtained through the closed-loop detection of the speed, compared with the given speed, and the torq...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02P23/00H02N15/00
Inventor 孙晓东陈龙江浩斌杨泽斌陈建锋李可
Owner 湖南凌翔磁浮科技有限责任公司
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