STATOR WITH A TEMPERATURE DETECTION UNIT FOR AN ELECTRIC MOTOR
20200076277 ยท 2020-03-05
Inventors
- Christian Finger-Albert (Bad Kissingen, DE)
- Stefan Oetzel (Schmalkalden, DE)
- Michael Menz (Hollstadt, DE)
Cpc classification
G01K1/026
PHYSICS
Y02T10/70
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B60Y2400/60
PERFORMING OPERATIONS; TRANSPORTING
G01K1/14
PHYSICS
H02K7/006
ELECTRICITY
H02K11/05
ELECTRICITY
B60K1/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
G01K1/14
PHYSICS
G01K1/02
PHYSICS
Abstract
A stator for an AC motor, includes windings of a first layer, which extend over a first region of the stator and are connectable to a first phase, and windings of a second layer, which extend over a second region of the stator and are connectable to a second phase, wherein the first region is offset relative to the second region and at least one overlap region is formed which is smaller than the individual regions, and wherein a temperature detection unit is arranged in the overlap region and is designed to measure the temperature of the windings in the overlap region.
Claims
1. A stator (3) for an AC motor, comprising: windings (9) of a first layer, which extend over a first region (7) of the stator (3) and are connectable to a first phase (A1, B1); windings (16) of a second layer, which extend over a second region (14) of the stator and are connectable to a second phase (A3, B3), wherein the first region (7) is offset relative to the second region (14) and at least one overlap region (13) is formed which is smaller than the individual regions, wherein a temperature detection unit is arranged in the overlap region (13) and is designed to measure the temperature of the windings (9, 16) in the overlap region.
2. The stator (3) according to claim 1, wherein the temperature detection unit comprises two sensors: one sensor at an outer diameter and one sensor at an inner diameter of the stator (3), with each sensor being designed to measure the temperature of the windings (9, 16) of the first and second layer in the overlap region (13).
3. The stator (3) according to claim 1, comprising windings (11) in a third layer which lie between the first and second layer and extend over a third region (8) of the stator (3) and are connectable to a third phase (A2, B2), wherein one region (7, 8, 14) is offset relative to another region and an overlap region (13) is formed which is smaller than the individual regions, wherein the temperature detection unit is arranged in the overlap region (13) and is designed to measure the temperature of the windings (9, 11, 16) in the overlap region (13).
4. The stator (3) according to claim 1, comprising: windings (9a) in the first layer which extend over a fourth region (7a) of the stator (3) and are connectable to a fourth phase; windings (16a) in the second layer which extend over a fifth region (14a) of the stator and are connectable to a fifth phase; windings (11a) in the third layer which extend over a sixth region (8a) of the stator (3) and can be connected to a sixth phase; wherein the windings (9, 9a, 11, 11a, 16, 16a) of a same layer form a plurality of overlap regions (13, 13a) with the windings of another layer, which overlap regions are each smaller than the individual regions, wherein a temperature detection unit is arranged in at least one of the plurality of overlap regions and is designed to measure the temperature of the windings in the overlap region.
5. The stator (3) according to claim 4, wherein windings (9, 9a, 16, 16a) of the first or second layer which extend over two regions (7, 7a, 14, 14a) of the same layer form an extended overlap region (21, 21a, 21b, 21c) with windings (11, 11a) of the third layer which extend over one region (8, 8a) and windings (9, 9a, 16, 16a) from a further region (7, 7a, 14, 14a) of the first or second layer, wherein a temperature detection unit is arranged in the extended overlap region and is designed to measure the temperature of the windings.
6. An electric motor with a stator (3) according to claim 1, wherein the electric motor also comprises at least two rectifiers, and each of the rectifiers can be connected to at least one winding, wherein the windings lie in different layers.
7. The electric motor with a stator (3) according to claim 1, wherein the electric motor also comprises at least two rectifiers and each of the rectifiers is connected to windings in three different layers and a half stator region (A, B).
8. The electric motor with a stator (3) according to claim 7, wherein the temperature detection unit is designed to detect the temperature of at least two windings in different stator regions (A, B).
9. The electric motor with a stator (3) according to claim 8, wherein the electric motor has at least two temperature detection units and each temperature detection unit is arranged in an extended overlap region (21, 21a, 21b, 21c).
10. A vehicle with a stator (3) or an electric motor according to claim 1.
Description
DESCRIPTION OF THE DRAWINGS
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033] As can also be seen in
[0034] The windings of phase A2 in the second layer extend from slot 23 to slot 48. The windings of phase B2 extend from slot 47 to 24. The windings of phase A3 in the third layer extend from slot 4 to slot 27. The windings of phase B3 in the third layer extend from slot 28 to slot 3.
[0035]
[0036] The stator in
[0037] In
[0038] A temperature detection unit, which is arranged in this overlap region 13, can measure the temperature of the windings 9, 16 of phases A1 and B3, for example using two sensors in each case. A temperature detection unit must thus be arranged only at one point of the stator 3 so as to be able to detect the temperature of windings 9, 16 operated with different phases. It is thus sufficient to provide a connection for a temperature detection unit only at this point of the stator.
[0039]
[0040] In this overlap region it is possible to monitor the temperature of three different windings, which are fed by three different phases, using a temperature detection unit that for example has 3 temperature sensors.
[0041] Next to the overlap region 13, a further monitoring region 17 is also formed, which likewise is four slots long, however only windings of two instead of three different phases can be monitored there.
[0042]
[0043] It can be seen by comparing
[0044] A further comparison with
[0045] The windings 9, 9a, 16, 16a in the regions 7, 7a, 14, 14a in the first or second layer are arranged adjacently in the same layer. Furthermore, the windings of the other regions also overlap in this region. An extended overlap region 21, 21a, 21b, 21c is thus formed, which is directly adjacent to the overlap region 13, 13a.
[0046] The extended overlap regions 21, 21a, 21b, 21c use a slot of the overlap regions 13, 13a and a further slot arranged next to it.
[0047] In the extended overlap region 21, 21a, 21b, 21c the temperature of four windings which are fed with four different phases can be determined at a position.
[0048] At the outer diameter of the stator 3 in the extended overlap region 21, 21a it is also possible to measure the temperature of windings that are fed by different rectifiers.
[0049] At the inner diameter of the stator 3 in the extended overlap region 21b, 21c it is possible to measure the temperature of windings that are fed by different rectifiers.
[0050] It is also possible to arrange two temperature detection units in two extended overlap regions arranged next to one another 21, 21a or 21b, 21c. It is thus possible to measure the temperature of windings that are fed by different rectifiers, and nevertheless to control both temperature detection units with one feed line on account of their proximity to one another.
[0051] For example, four extended overlap regions 21, 21a, 21b, 21c are shown in
[0052] A temperature detection unit with, for example, three sensors, which is arranged in one of the extended overlap regions can monitor the temperature of three windings in the inner and outer diameter using three sensors at two slots.
[0053]