Coil formation in an electric machine with concentrated windings
11909260 ยท 2024-02-20
Assignee
Inventors
- Ziad Azar (Sheffield, GB)
- Erik Groendahl (Them, DK)
- Subhra Samanta (Ikast, DK)
- Arwyn Thomas (Cheshire, GB)
Cpc classification
H02K7/1838
ELECTRICITY
Y02E10/72
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
International classification
Abstract
Provided is an electric generator including a stator including: a stator yoke a plurality of teeth, a plurality of slots extending radially from the stator yoke to respective radial slot ends, the plurality of slots being circumferentially interposed between the teeth of the stator, each slot including a bottom portion adjacent to the stator yoke and a top portion adjacent to the respective radial slot end. The stator further includes a plurality of coils housed in the plurality of slots, each slot housing at least one coil in the bottom portion and at least another coil in the top portion, each coil housed in the bottom portion of a first slot of the plurality of slots being connected to another respective coil housed in the top portion of a second slot of the plurality of slots.
Claims
1. An electric machine comprising a stator including: a stator yoke longitudinally extending along a longitudinal axis of the stator, a plurality of teeth protruding according to a radial direction orthogonal to the longitudinal axis from the stator yoke to respective radial tooth ends, a plurality of slots extending radially from the stator yoke to respective radial slot ends, the plurality of slots being circumferentially interposed between the teeth of the stator, each slot including a bottom portion adjacent to the stator yoke and a top portion adjacent to the respective radial slot end, a plurality of coils housed in the plurality of slots, each slot housing at least one coil in the bottom portion and at least another coil in the top portion, wherein each respective coil housed in the bottom portion of a first slot of the plurality of slots is connected to another respective coil housed in the top portion of a second slot of the plurality of slots, wherein the second slot of the plurality of slots is adjacent to the first slot, the first slot and the second slot being separated by one interposed tooth of the plurality of teeth, and wherein the coils are connected such that the coil in the bottom portion which is more distanced from the interposed tooth is respectively connected to the coil in the top portion which is adjacent to the interposed tooth and that the coil in the bottom portion which is adjacent to the interposed tooth is respectively connected to the coil in the top portion which is more remote from the interposed tooth.
2. The electric machine as claimed in claim 1, wherein each slot houses at least two coils in the bottom portion and two other coils in the top portion.
3. The electric machine as claimed in claim 2, wherein all the coils in the bottom portion of a respective slot belong to a first electrical phase of the electric generator and all the coils in the top portion of the respective slot belong to a second electrical phase of the electric generator.
4. The electric machine as claimed in claim 1, wherein the stator comprises a plurality of segments, each segment comprising two end slots at respective circumferential ends, each end slot having a circumferential extension corresponding to half a circumferential extension of each of the plurality of slots of the stator, each end slot housing at least one coil in one of the bottom portion and the top portion, wherein the other of the bottom portion and the top portion is free of coils.
5. A method of manufacturing an electric machine comprising: providing a stator having a stator yoke longitudinally extending along a longitudinal axis of the stator, a plurality of teeth protruding according to a radial direction orthogonal to the longitudinal axis from the stator yoke to respective radial tooth ends and a plurality of slots extending radially from the stator yoke to respective radial slot ends, the plurality of slots being circumferentially interposed between the teeth of the stator, each slot including a bottom portion adjacent to the stator yoke and a top portion adjacent to the respective radial slot end, providing a plurality of coils housed in the plurality of slots, each slot housing at least one coil in the bottom portion and at least another coil in the top portion, connecting each coil housed in the bottom portion of a first slot of the plurality of slots to another respective coil housed in the top portion of a second slot of the plurality of slots, wherein the second slot of the plurality of slots is adjacent to the first slot, the first slot and the second slot being separated by one interposed tooth of the plurality of teeth, and the coils are connected such that the coil in the bottom portion which is more distanced from the interposed tooth is respectively connected to the coil in the top portion which is adjacent to the interposed tooth and that the coil in the bottom portion which is adjacent to the interposed tooth is respectively connected to the coil in the top portion which is more remote from the interposed tooth.
6. The method of manufacturing as claimed in claim 5, wherein the stator is manufactured as a plurality of segments, each segment comprising two end slots at respective circumferential ends, each end slot having a circumferential extension corresponding to half a circumferential extension of each of the plurality of slots of the stator, the method comprising: providing in each slot at least one coil in one of the bottom portion and the top portion, wherein the other of the bottom portion and the top portion is free of coils.
7. The method of manufacturing as claimed in claim 6, wherein the method further comprises forming a slot of the plurality of slots of the stator, the formed slot housing a plurality of coils, by circumferentially joining two segments.
8. The method of manufacturing as claimed in claim 6, the method further comprising the step of providing at least a support at a respective circumferential end of one of the segments of the stator for filling any of the bottom portion or the top portion which is free of coils during transportation.
9. An electric machine comprising a stator including: a stator yoke longitudinally extending along a longitudinal axis of the stator, a plurality of teeth protruding according to a radial direction orthogonal to the longitudinal axis from the stator yoke to respective radial tooth ends, a plurality of slots extending radially from the stator yoke to respective radial slot ends, the plurality of slots being circumferentially interposed between the teeth of the stator, each slot including a bottom portion adjacent to the stator yoke and a top portion adjacent to the respective radial slot end, a plurality of coils housed in the plurality of slots, each slot housing at least one coil in the bottom portion and at least another coil in the top portion, wherein each respective coil housed in the bottom portion of a first slot of the plurality of slots is connected to another respective coil housed in the top portion of a second slot of the plurality of slots, wherein the stator comprises a plurality of segments, each segment comprising two end slots at respective circumferential ends, each end slot having a circumferential extension corresponding to half a circumferential extension of each of the plurality of slots of the stator, each end slot housing at least one coil in one of the bottom portion and the top portion, wherein the other of the bottom portion and the top portion is free of coils, wherein two circumferentially adjacent segments are joined together to form a full slot.
10. The electric machine as claimed in claim 9, wherein the second slot of the plurality of slots is adjacent to the first slot, the first slot and the second slot being separated by one interposed tooth of the plurality of teeth.
11. The electric machine as claimed in claim 10, wherein the coils are connected such that the coil in the bottom portion which is more distanced from the interposed tooth is respectively connected to the coil in the top portion which is adjacent to the interposed tooth and that the coil in the bottom portion which is adjacent to the interposed tooth is respectively connected to the coil in the top portion which is more remote from the interposed tooth.
12. The electric machine as claimed in claim 9, wherein each slot houses at least two coils in the bottom portion and two other coils in the top portion.
13. The electric machine as claimed in claim 12, wherein all the coils in the bottom portion of a respective slot belong to a first electrical phase of the electric generator and all the coils in the top portion of the respective slot belong to a second electrical phase of the electric generator.
14. A method of manufacturing a stator for an electric machine comprising: providing a stator having a stator yoke longitudinally extending along a longitudinal axis of the stator, a plurality of teeth protruding according to a radial direction orthogonal to the longitudinal axis from the stator yoke to respective radial tooth ends and a plurality of slots extending radially from the stator yoke to respective radial slot ends, the plurality of slots being circumferentially interposed between the teeth of the stator, each slot including a bottom portion adjacent to the stator yoke and a top portion adjacent to the respective radial slot end, the stator comprising a plurality of segments, each segment comprising a first end slot and a second end slot at two respective circumferential ends, each end slot having a circumferential extension corresponding to half a circumferential extension of each of the plurality of slots of the stator, providing a plurality of coils housed in the plurality of slots, each slot housing at least one coil in the bottom portion and at least another coil in the top portion, each end slot housing at least one coil in one of the bottom portion and the top portion, the other of the bottom portion and the top portion being free of coils, connecting each coil housed in the bottom portion of a first slot of the plurality of slots to another respective coil housed in the top portion of a second slot of the plurality of slots, and circumferentially joining together the plurality of segments such that when two adjacent segments are joined together, the slots of the stator are formed.
15. The method of manufacturing as claimed in claim 14, wherein the stator is manufactured as a plurality of segments, each segment comprising two end slots at respective circumferential ends, each end slot having a circumferential extension corresponding to half a circumferential extension of each of the plurality of slots of the stator, the method comprising: providing in each slot at least one coil in one of the bottom portion and the top portion, wherein the other of the bottom portion and the top portion is free of coils.
16. The method of manufacturing as claimed in claim 15, wherein the method further comprises forming a slot of the plurality of slots of the stator, the formed slot housing a plurality of coils, by circumferentially joining two segments.
17. The method of manufacturing as claimed in claim 15, the method further comprising the step of providing at least a support at a respective circumferential end of one of the segments of the stator for filling any of the bottom portion or the top portion which is free of coils during transportation.
Description
BRIEF DESCRIPTION
(1) Some of the embodiments will be described in detail, with reference to the following figures, wherein like designations denote like members, wherein:
(2)
(3)
(4)
(5)
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DETAILED DESCRIPTION
(8) The illustrations in the drawings are schematic. It is noted that in different figures, similar or identical elements are provided with the same reference signs.
(9)
(10) The wind turbine 1 further comprises a wind rotor 5 having two, three or more blades 4 (in the perspective of
(11) The blades 4 extend radially with respect to the rotational axis Y.
(12) The wind turbine 1 comprises a concentrated winding electric generator 10.
(13) The wind rotor 5 is rotationally coupled with the electric generator 10 by means of a rotatable main shaft 9.
(14) According to other possible embodiments of the present invention (not represented in the attached figures), the wind rotor 5 is rotationally coupled directly with the electric generator 10 (direct-drive generator configuration).
(15) A schematically depicted bearing assembly 8 is provided in order to hold in place the rotor 5. The rotatable main shaft 9 extends along the rotational axis Y. The permanent magnet electric generator 10 includes a stator 11 and a rotor 12. The rotor 12 is radially external to the stator 11 and is rotatable with respect to the stator 11 about the rotational axis Y. According to other embodiments of the present invention (not shown) the rotor is radially internal to the stator 11.
(16) According to other possible embodiments of the present invention (not represented in the attached figures), embodiments of the present invention can be applied to any electrical generator or motor which has concentrated winding topology, for example geared drive-trains or electrical machine of the synchronous or asynchronous types.
(17)
(18) The stator includes a stator yoke 22 (only partially represented in the attached figures) longitudinally extending along the longitudinal axis of the stator, from which a plurality of teeth 15 (only two teeth 15 are partially represented in the attached
(19) The stator includes also a plurality of slots 16, 17 (one slot 16 is shown in
(20) The plurality of slots 16, 17 are circumferentially interposed between the teeth 15 of the stator 11.
(21) Each slot 16, 17 houses a respective concentrated winding and a wedge 40. The wedges 40 are provided at radial slot ends 39 for protecting and keeping in place the respective windings.
(22) The concentrated windings comprise a plurality of coils 41, 42, 43, 44, as better detailed in the following.
(23) At each slot end 39 a respective wedge 40 is provided for radially closing the respective slot 16, 17. Each wedge 40 circumferentially extends in the respective slot 16, 17 between two notches 35 respectively provided at the radial tooth ends 38 of the two teeth 15 which circumferentially delimit the respective slot 16, 17.
(24) The slot 16 includes a bottom portion 16a adjacent to the stator yoke 22 and a top portion 16b adjacent to the respective radial slot end 39.
(25) The slot 16 includes two coils 41, 42 in the bottom portion 16a, both belonging to a first phase A of the electric generator 11, and two coils 43, 44 in the top portion 16b, both belonging to a second phase B of the electric generator 11.
(26) With reference to
(27) Similarly to the first slot 16, the second slot 17 includes also a bottom portion 17a adjacent to the stator yoke 22 and a top portion 17b adjacent to the respective radial slot end 39.
(28) Differently from the first slot 16, the second slot 17 includes the two coils 41, 42 of the first phase in the top portion 17b and the two coils 43, 44 of the second phase B in the bottom portion 17a.
(29) Each coil 41, 42 housed in the bottom portion 16a of the first slot 16 is connected to another respective coil 41, 42 housed in the top portion 17b of the second slot 17 by means of a respective end-windings 45.
(30) Conversely, each coil 43, 44 housed in the bottom portion 17a of the second slot 17 is connected to another respective coil 43, 44 housed in the top portion 16b of the first slot 16 by means of a respective end-windings 45.
(31) The representation of end-windings 45 in the cross section of
(32) As shown in the embodiment of
(33)
(34) Each end slot 26, 27 has a circumferential extension corresponding to half the circumferential extension of each of the plurality of slots 16, 17 of the stator 11, in such a way that, when two segments 51 are circumferentially joined together, a slot 16, 17 of the stator 11 is formed.
(35) To such purpose, the coils 41, 42, 43, 44 are already formed and inserted in the end slot 26, 27, in such a way that, when two segments 51 are circumferentially joined together a slot 16, 17 of the stator 11 is formed with the respective coils 41, 42, 43, 44 already included therein.
(36) Each of the end slots 26, 27 comprises respective bottom portions 26a, 27a adjacent to the stator yoke 22 and top portions 26b, 27b adjacent to the respective radial slot end 39.
(37) Respective half wedges 40a, 40b are provided at each end slot 26, 27, in such a way that, when two segments 51 are circumferentially joined together, a wedge 40 of the stator 11 is formed.
(38) In general, in a segmented stator 11, each end slot 26, 27 houses at least one coil 41, 42, 43, 44 in one of the bottom portion 26a, 27a and the top portion 26b, 27b the other of the bottom portion 26a, 27a and the top portion 26b, 27b being free of coils.
(39) The embodiment of
(40) The manufacturing of the two segments 51 and the subsequent assembly in an electrical machine, e.g. the electric generator 10, results in a balanced magnetic inductance in all of the plurality of coils (41, 42, 43, 44).
(41) When manufacturing the stator 11, a support 61 at each circumferential end 52, 53 of the segment 51 of the stator 11 for filling any of the bottom portion 26a, 27a or the top portion 26b, 27b being free of coils. This is useful during storing and transportation of the segment 51.
(42) Although the present invention has been disclosed in the form of preferred embodiments and variations thereon, it will be understood that numerous additional modifications and variations could be made thereto without departing from the scope of the invention.
(43) For the sake of clarity, it is to be understood that the use of a or an throughout this application does not exclude a plurality, and comprising does not exclude other steps or elements.