ELECTRIC GENERATOR
20190068096 ยท 2019-02-28
Inventors
- Tobias Siegfried BATHON (Jenbach, Tirol, AT)
- Freddy Eduardo ALCAZAR BARRIENTOS (Jenbach, Tirol, AT)
- Logeswaran Partheeban (Bangalore, IN)
Cpc classification
H02P9/10
ELECTRICITY
F03D9/25
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
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
H02P9/10
ELECTRICITY
Abstract
An electric rotating machine having a stator and a rotor, wherein the rotor is provided with rotor windings connected to electric contacts to carry a field current. A control device is provided to adjust the field current carried by the rotor windings. At least one sensor is provided to give information about the temperature at the location of the at least one sensor. The at least one sensor is located on or embedded in the rotor windings, and the at least one sensor is connected to the control device such that the control device is able to read the information given by the at least one sensor. The control device is further arranged to adjust the field current carried by the rotor windings and/or power output or power input of the electric rotating machine based on the information given by the at least one sensor.
Claims
1. An electric rotating machine comprising: a stator and a rotor, wherein the rotor is provided with rotor windings connected to electric contacts to carry a field current; a control device provided to adjust the field current carried by the rotor windings; and at least one sensor to give information about a temperature at a location of the at least one sensor, the at least one sensor located on or embedded in the rotor windings, and the at least one sensor connected to the control device such that the control device is operable to read the information given by the at least one sensor; wherein the control device is further arranged to adjust the field current carried by the rotor windings, and/or power output or power input of the electric rotating machine based on the information given by the at least one sensor.
2. The electric rotating machine according to claim 1, wherein the control device is arranged to reduce the field current carried by the rotor windings and/or power output or power input of the electric rotating machine if the temperature at the location of the at least one sensor reaches or exceeds a given threshold.
3. The electric rotating machine according to claim 1, wherein the at least one sensor is a plurality of sensors, the plurality of sensors arranged at different positions on or in the rotor windings.
4. The electric rotating machine according to claim 1, wherein the at least one sensor is of a passive type, wherein there is provided an emitter arranged to send a frequency signal, the frequency signal changed at the position of the at least one sensor depending on the temperature at the location of the at least one sensor, and wherein the at least one sensor is arranged to retransmit the changed frequency signal.
5. The electric rotating machine according to claim 1, wherein the connection between the control device and the at least one sensor comprises slip rings and wires leading to the slip rings.
6. The electric rotating machine according to claim 1, wherein the electric machine is an electric generator.
7. A genset comprising: an electric generator and a prime mover connected by a shaft to the electric generator to transfer torque, wherein the electric generator or the prime mover is an electric rotating machine according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Embodiments of the disclosure are shown in
[0025]
[0026]
[0027]
DETAILED DESCRIPTION
[0028]
[0029] In this embodiment a plurality of passive sensors 6 (six of which are shown in
[0030] If the control unit 5 concludes from the information provided by the sensor 6 via emitter/receiver-units 11 that the temperature at one or several of the locations of the sensors 6 reaches or exceeds a given thresholds it can:
[0031] command the prime mover 8 to reduce driving torque of the rotor 3; and/or
[0032] command an excitation control unit 9 to reduce field current carried by the rotor windings 4
[0033]
[0034] As noted above,
[0035] In