Method for determining the state of strength of winding overhangs of electric machines, and arrangement for carrying out the method
First Claim
1. A method for determining a state of strength of winding overhangs in an electric machine, the electric machine comprising at least one vibration sensor arranged on a winding end of a winding overhang of the electric machine and connected to an evaluation unit used to detect a vibration of the winding end based on an output of the at least one vibration sensor, and a stator, the method comprising the steps of:
- determining a vibration amplitude reference that is dependent on at least one phase current in the stator;
comparing an amplitude of vibration of the winding end indicated by the evaluation unit with the vibration amplitude reference;
determining a phase reference that is dependent on a temperature of the electric machine;
comparing a phase between the vibration detected by the evaluation unit and the at least one phase current with the phase reference; and
determining a mechanical condition of the winding overhang based on the amplitude and phase comparisons.
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Accused Products
Abstract
In a method for determining the state of strength of winding overhangs (2) of electric machines, at least one sensor (3), which is arranged on a winding end (4) of a winding overhang (2) and is connected to an evaluation unit (5) is used to determine a vibration amplitude (A) of the winding end (4), and the associated phase (φ). The phase (φ) of the vibration amplitude (A) is determined in this case with reference to a phase of an electric current flowing through the winding end (4). The quotient (ΔA) of the vibration amplitude (A) and an amplitude reference (Aref) dependent on the electric current, and the quotient (Δφ) of the phase (φ) of the vibration amplitude (A) and a phase reference (φref) dependent on the temperature of the winding overhang (2) permit the state of strength of winding overhangs to be determined and causes to be located in the event of a change in the vibration amplitude.
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Citations
6 Claims
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1. A method for determining a state of strength of winding overhangs in an electric machine, the electric machine comprising at least one vibration sensor arranged on a winding end of a winding overhang of the electric machine and connected to an evaluation unit used to detect a vibration of the winding end based on an output of the at least one vibration sensor, and a stator, the method comprising the steps of:
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determining a vibration amplitude reference that is dependent on at least one phase current in the stator; comparing an amplitude of vibration of the winding end indicated by the evaluation unit with the vibration amplitude reference; determining a phase reference that is dependent on a temperature of the electric machine; comparing a phase between the vibration detected by the evaluation unit and the at least one phase current with the phase reference; and determining a mechanical condition of the winding overhang based on the amplitude and phase comparisons. - View Dependent Claims (2, 3, 4, 5, 6)
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3. The method of claim 1, wherein the determination indicates that the winding overhang is loose when a) a difference between the amplitude of vibration of the winding end and the amplitude vibration reference is greater than zero, and b) a difference between the phase between the vibration detected by the evaluation unit and the at least one phase current and the phase reference is not equal to zero.
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4. The method of claim 1, wherein:
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the at least one vibration sensor comprises three sensors arranged on winding ends of the winding overhang in a uniform distribution on the circumference of the winding overhang; each of the three sensors is constructed from optical acceleration pickups; at least one of the three sensors measures acceleration in a direction tangential to the winding end on which it is arranged; and at least one of the three sensors measures acceleration in a direction radial to the winding end on which it is arranged.
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5. The method of claim 4, wherein the evaluation unit comprises:
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a measured-value acquisition and conditioning system for the at least one vibration sensor; a measured-value acquisition and conditioning system for stator currents of the electric machine; and a computer unit.
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6. The method of claim 1, wherein the electric machine is a generator.
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Specification