Device for detecting transformer winding state utilizing sweep frequency power source exciting
A technology of transformer winding and frequency sweeping power supply, which is applied in measuring devices, measuring electrical variables, instruments, etc., can solve problems such as complex frequency response waveforms, many winding conditions, and difficult quantitative criteria, so as to avoid sudden short circuits, timely maintenance or The effect of replacement
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[0044] The device provided by the present invention utilizes the frequency sweeping power supply to excite and detect the state of the transformer winding, and the transformer winding is equivalent to a complex elastic system with concentrated parameters. The natural frequency of several orders of mechanical vibration will gradually move to a lower frequency direction, and the overall amplitude of the low frequency band will increase, which will change the vibration characteristics of the entire elastic system; and the deformation of the transformer winding will cause elastic vibration. The change of the system structure will change the vibration characteristics of the elastic system. Therefore, as long as the change of the vibration characteristics of the elastic system itself can be effectively detected and the change of the natural resonant frequency curve of the transformer winding can be analyzed, the looseness and deformation of the transformer winding can be detected.
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specific Embodiment
[0061] In a substation, the low-voltage side of phase A of the main transformer suffered a short-circuit impact due to the breakdown of the rheology at the outlet, and the protection action of the pressure release device was activated. Later, due to system deployment reasons, it was decided to put it into operation again.
[0062] A power outage was carried out before operation for detection. First, the short-circuit impedance method was used for testing, and the test found that the short-circuit impedance basically did not change (the change value was less than 0.1%). Then, the FRA method was used to test and analyze the low-voltage winding of phase A of the transformer, and it was found that there was no abnormal change compared with the original measurement curve. According to the conclusions of these two electrical measurement methods, it is believed that the A-phase winding coil of the transformer has no deformation fault.
[0063] But, adopt the device of the present in...
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