METHOD FOR IDENTIFYING THE POSITION OF A ROTOR OF AN ELECTRIC MOTOR, TARGET FOR DETERMINING THE POSITION OF A ROTOR OF THE ELECTRIC MOTOR AND ELECTRIC MOTOR
20170038226 ยท 2017-02-09
Assignee
Inventors
Cpc classification
International classification
Abstract
The invention relates to a method for identifying the position of a rotor of an electric motor, in which method a target arranged on a rotor is sensed using a sensor. In a method which can be carried out cost-effectively and nevertheless delivers highly accurate sensor signals, a rotational movement of the rotor is detected using an inductive or a capacitive sensor.
Claims
1. A method for the detection of a position of a rotor of an electric motor, comprising: scanning a target arranged on a rotor is scanned with a sensor, and detecting a rotary motion of the rotor with an inductive or a capacitive sensor.
2. The method according to claim 1, further comprising detecting the position of the rotor via a measurement of a distance between the target and the sensor changing by the rotary motion of the rotor.
3. The method according to claim 1, wherein the detection of the position of the rotor occurs by the sensor scanning an area projected from a defined unambiguous geometric shape.
4. A target for determining a position of a rotor, comprising a geometric shape that is unambiguous over a rotation of the rotor and is scannable using a sensor.
5. The target according to claim 4, wherein the geometric shape is embodied in a three-dimensional shape and the geometric shape extends along an axis of rotation of the rotor, with the sensor being adapted to detect a distance between the target and the sensor changing due to the rotary motion of the rotor.
6. The target according to claim 5, wherein the three-dimensional shape is embodied as a helix, having a pitch continuously or gradually increasing or decreasing within an angle of 360.
7. The target according to claim 4, wherein the defined unambiguous geometric shape is arranged on a substrate comprising an electrically conductive material, with an electrically non-conductive geometric shape partially covering the substrate.
8. The target according to claim 7, wherein the geometric shape is embodied as an Archimedean screw.
9. An electric motor, comprising a rotor moving at a rotor shaft, on which a target is arranged in a torque-proof fashion, which can be scanned is scannable by a sensor, the target is embodied according to claim 1, wherein and is arranged at a face of the rotor shaft, and is scannable by a sensor aligned axially in reference to the rotor shaft towards the face.
10. The electric motor according to claim 9, wherein the sensor is embodied as an inductive or capacitive sensor.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The invention allows numerous embodiments. Two of which shall be explained in greater detail based on the figures shown in the drawings.
[0018] Shown are:
[0019]
[0020]
[0021]
[0022]
[0023] Identical features are marked with the same reference characters.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0024]
[0025]
[0026]
[0027] It applies for both embodiments explained that the mechanical 360 of the rotation of the rotor shaft is provided with a changing shape. The mechanical 360 can also be divided by polar pairs and accordingly the number of sensor areas can be implemented over the mechanical 360. Based on this advantageous determination of the position of the electric motor 3 the commutation is to be considerably improved. A sensor for the position of the rotor for commutating and determination of the position of the electrically commutated electric motor is therefore easily possible in an actuator using inductive and capacitive measurements. Here, this method offers the advantage of operating without a permanent magnet and thus disturbing influences are eliminated, such as change of position in the vertical and tangential direction, in the sensor system of the position of the rotor. This method can be used with the special targets for the detection of angles.
LIST OF REFERENCE CHARACTERS
[0028] 1 clutch operating system [0029] 2 control device [0030] 3 electric motor [0031] 4 transmission [0032] 5 clutch actuating device [0033] 6 rotor shaft [0034] 7 inductive sensor [0035] 8 target [0036] 9 sensor head [0037] 10 sensor head [0038] 11 pitch of the three-dimensional shape [0039] 12 pitch of the three-dimensional shape [0040] 13 electrically conductive material [0041] 14 two-dimensional shape [0042] 15 inductive sensor