Apparatus for detecting steering angle, steering system, and torque sensing method of steering system

US11325643B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11325643-B2
Application numberUS-201816178567-A
CountryUS
Kind codeB2
Filing dateNov 1, 2018
Priority dateNov 3, 2017
Publication dateMay 10, 2022
Grant dateMay 10, 2022

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

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Provided are an apparatus for detecting a steering angle, a steering system, and a torque sensing method of the steering system. The apparatus includes a rotor formed in a cylindrical shape having a central region, in which a space for housing a rotary shaft is formed, and configured to have a plurality of permanent magnets of different polarities alternately disposed at regular intervals in a circumferential direction, a stator body formed in a cylindrical shape having a space for housing the rotor, and two stator rings formed in ring shapes coupled to the stator body and disposed at a certain distance in a longitudinal direction of the rotary shaft. Accordingly, it is possible to calculate an accurate torque, and a response rate is increased so that stability and performance of the steering system can be improved.

First claim

Opening claim text (preview).

What is claimed is: 1. An apparatus for detecting a steering angle, the apparatus comprising: a rotor formed in a cylindrical shape having a central region, in which a space for housing a rotary shaft is formed, the rotor configured to be rotatable with the rotary shaft and having a plurality of permanent magnets of different polarities alternately disposed at regular intervals in a circumferential direction; a stator body formed in a cylindrical shape having an inner space for housing the rotor at a center of the stator body; and two stator rings coupled to the stator body and formed in a ring shape disposed at a certain distance in a longitudinal direction of the rotary shaft, the two stator rings having another inner space for housing the rotor at a center of the two stator rings, wherein the two stator rings receive a magnetic field from the permanent magnets and transfer the magnetic field to magnetic sensors, wherein the rotor is disposed in the inner space of the stator body and the two stator rings at the center of the stator body and the two stator rings, wherein the two stator rings are formed in the ring shape surrounding an external circumferential surface of the stator body and include an upper stator ring coupled to an upper portion of the stator body and a lower stator ring coupled to a lower portion of the stator body at a certain distance from the upper stator ring, wherein the upper stator ring includes: an upper ring section of the ring shape coming in contact with the external circumferential surface of the stator body; and a plurality of upper fixing segments formed in a circumferential direction of the upper ring section and configured to extend inward from a lower end of the upper ring section and bend upward, wherein the lower stator ring includes: a lower ring section of the ring shape coming in contact with the external circumferential surface of the stator body; and a plurality of lower fixing segments formed in a circumferential direction of the lower ring section and configured to extend inward from an upper end of the lower ring section and bend downward, wherein the total number of the plurality of upper fixing segments and the plurality of lower fixing segments is equal to the number of the plurality of permanent magnets of the rotor or a multiple thereof. 2. The apparatus of claim 1 , wherein the stator body is formed by plastic molding, and the pair of stator rings are molded together with the stator body and coupled to the stator body. 3. The apparatus of claim 1 , wherein the pair of stator rings are molded together with the stator body, and the upper stator ring and the lower stator ring are disposed so that the upper fixing segments and the lower fixing segments alternate with each other. 4. The apparatus of claim 3 , wherein free-edge portions of the upper fixing segments and the lower fixing segments are exposed to an internal side surface of the stator body in which the rotor is disposed. 5. The apparatus of claim 1 , further comprising: an arc-shaped upper guide and lower guide separately coupled to external circumferential surfaces of the pair of stator rings; and one pair of the magnetic sensors installed between the upper guide and the lower guide and configured to sense magnetic fields generated by the motor. 6. The apparatus of claim 5 , wherein one pair of upper guide segments are formed on the upper guide at a certain distance from each other to protrude outward from a lower end of the upper guide, and one pair of lower guide segments are formed on the lower guide at a certain distance from each other to protrude outward from an upper end of the lower guide. 7. The apparatus of claim 5 , wherein the magnetic sensors are separately installed between the pair of upper guide segments and between the pair of lower guide segments. 8. The apparatus of claim 5 , wherein magnetic fields of opposite polarities are sensed by the pair of magnetic sensors. 9. A steering system comprising: a steering angle detection apparatus including a rotor in which a plurality of permanent magnets of different polarities are alternately disposed at regular intervals in a circumferential direction, wherein the rotor is configured to be rotatable with a rotary shaft, a stator body formed in a cylindrical shape having an inner space for housing the rotor at a center of the stator body, one pair of stator rings formed in ring shapes coupled to the stator body, disposed at a certain distance in a longitudinal direction of the rotary shaft and having another inner space for housing the rotor at a center of the pair of stator rings, and one pair of magnetic sensors installed at a certain distance from each other in a circumferential direction of the pair of stator rings on external sides of the pair of stator rings and configured to sense magnetic fields generated when the rotor rotates, wherein the rotor is disposed in the inner space of the stator body and the pair of stator rings at the center of the stator body and the pair of stator rings, wherein the stator rings receive the magnetic field from the permanent magnets and transfer the magnetic field to the pair of magnetic sensors; a torque calculator configured to calculate a torque using a difference between the magnetic fields of the pair of stator rings sensed by the pair of magnetic sensors; and a steering controller configured to set a target torque to be output from a steering motor according to a driver's operation of a steering wheel based on the calculated torque, apply a current to the steering motor, compare the target torque and an actual torque of the steering motor detected after the steering motor is driven, and feed a comparison result back, wherein the one pair of stator rings are formed in the ring shape surrounding an external circumferential surface of the stator body and include an upper stator ring coupled to an upper portion of the stator body and a lower stator ring coupled to a lower portion of the stator body at a certain distance from the upper stator ring, wherein the upper stator ring includes: an upper ring section of the ring shape coming in contact with the external circumferential surface of the stator body; and a plurality of upper fixing segments formed in a circumferential direction of the upper ring section and configured to extend inward from a lower end of the upper ring section and bend upward, wherein the lower stator ring includes: a lower ring section of the ring shape coming in contact with the external circumferential surface of the stator body; and a plurality of lower fixing segments formed in a circumferential direction of the lower ring section and configured to extend inward from an upper end of the lower ring section and bend downward, wherein the total number of the plurality of upper fixing segments and the plurality of lower fixing segments is equal to the number of the plurality of permanent magnets of the rotor or a multiple thereof. 10. A torque sensing method of a steering system including a steering angle detection apparatus including a rotor in which a plurality of permanent magnets of different polarities are alternately disposed at regular intervals in a circumferential direction, wherein the rotor is configured to be rotatable with a rotary shaft, a stator body formed in a cylindrical shape having an inner space for housing the rotor at a center of the stator body, one pair of stator rings formed in ring shapes coupled to the stator body, disposed at a certain distance in a longitudinal direction of a rotary shaft and having another inner space for housing the rotor at a center of the pair of stator rings, wherein the rotor is disposed in the inner space of the

Assignees

Inventors

Classifications

  • to steering wheels, e.g. for power assisted steering · CPC title

  • Determination of steering angle · CPC title

  • influenced by the relative movement between the Hall device and magnetic fields (see G01R33/06) · CPC title

  • B62D6/10Primary

    characterised by means for sensing {or determining} torque · CPC title

  • involving permanent magnets · CPC title

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Frequently asked questions

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What does patent US11325643B2 cover?
Provided are an apparatus for detecting a steering angle, a steering system, and a torque sensing method of the steering system. The apparatus includes a rotor formed in a cylindrical shape having a central region, in which a space for housing a rotary shaft is formed, and configured to have a plurality of permanent magnets of different polarities alternately disposed at regular intervals in a …
Who is the assignee on this patent?
Mando Corp
What technology area does this patent fall under?
Primary CPC classification B62D6/10. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue May 10 2022 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 4 related publications on this page (citations in our corpus or others sharing the same primary CPC).