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Linear rotary switch reluctance motor and control method therefor

A rotary switch and reluctance motor technology, applied in the direction of AC motor control, general control strategy, control system, etc., can solve the problems of increasing the axial length of the motor, high coupling degree of linear and rotary motion control, large and complicated system, etc., to achieve Effects of improving system power density, compact structure, and simplifying control methods

Inactive Publication Date: 2017-08-29
NANJING UNIV OF AERONAUTICS & ASTRONAUTICS
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The structure of the LRSRM based on the first idea is simple, but the same stator winding needs to control the torque required to generate rotary motion and the axial force required to generate linear motion, so the coupling degree of linear motion and rotary motion control is relatively low. High, need to design more complex decoupling control algorithm
Although the LRSRM based on the second idea can independently control the linear motion and the rotary motion by different stator windings, it will introduce more stator windings and corresponding hardware controllers, which not only increases the axial length of the motor, but also make the system larger and more complex

Method used

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  • Linear rotary switch reluctance motor and control method therefor
  • Linear rotary switch reluctance motor and control method therefor
  • Linear rotary switch reluctance motor and control method therefor

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Embodiment Construction

[0020] The technical solutions of the present invention will be described in detail below in conjunction with the accompanying drawings.

[0021] A linear rotary switched reluctance motor, the structure of which is as follows figure 1 , figure 2 As shown, it consists of two stator cores and one rotor core, and the winding distribution is as follows image 3 , 4 As shown, two sets of windings are wound on each stator tooth, one set of windings straddles the two stator teeth and is mainly used to control the torque, called the torque winding; the other set of windings is first connected with the torque winding Winding in the same direction is installed on the stator 1 tooth pole, and then reversely wound and installed on the stator 2 tooth pole. It is mainly used to control the axial force, which is called the axial force winding.

[0022] The control method of the linear rotary switched reluctance motor (taking 6 / 4 poles as an example) is described as follows:

[0023] The...

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Abstract

The invention discloses a linear rotary switch reluctance motor and a control method therefor. The motor comprises one rotor iron core and two stator iron cores; the two stator iron cores are arranged side by side in a rotary shaft direction of the motor; a set of torque winding and a set of axial force winding are mounted on tooth poles of the two stators; the torque winding transversely crosses the tooth poles of the two stators for controlling torque; the axial force winding and the torque winding are wound around the tooth poles of one stator in a homodromous manner and then wound around the tooth poles of the other stator in an opposite direction manner for controlling axial force; and the current on the torque winding flows in a unidirectional manner while the current on the axial force winding flows in a bidirectional manner. Independent control of rotary and linear movement of the linear rotary switch reluctance motor is realized, and the axial length of the motor is shortened.

Description

technical field [0001] The invention belongs to the technical field of switched reluctance motors, in particular to a linear rotary switched reluctance motor. Background technique [0002] Traditional single-degree-of-freedom motors achieve only one form of motion, such as rotary or linear motion. In some specific applications, such as robot control, industrial production, ship propulsion, artillery turntable, aerospace vehicles, etc., the drive system is required to have the ability to generate multi-dimensional motion. One of the solutions based on this requirement is to combine multiple single-degree-of-freedom motors through a mechanical transmission mechanism to achieve multi-dimensional drive functions. However, this method not only leads to larger volume and weight of the system, but also reduces the control accuracy of the system due to the clearance of each transmission mechanism. Therefore, a linear rotary motor with a two-degree-of-freedom drive function emerges...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02K16/04H02K3/18H02K3/28H02P25/08H02P23/00
CPCH02K3/18H02K3/28H02K16/04H02P23/00H02P23/0004
Inventor 曹鑫李小笛邓智泉
Owner NANJING UNIV OF AERONAUTICS & ASTRONAUTICS