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Tap changer vibration signal noise reduction method based on empirical mode decomposition EMD

An empirical mode decomposition and vibration signal technology, applied in character and pattern recognition, instruments, measuring devices, etc., can solve the problem that wavelet transform does not have signal decomposition characteristics, and achieve good adaptability and good noise reduction effect

Inactive Publication Date: 2018-12-28
JIANGSU ELECTRIC POWER CO +2
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  • Claims
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Problems solved by technology

The noise reduction method based on wavelet transform has been widely used in mechanical fault diagnosis. However, the decomposition result obtained by wavelet transform after the wavelet base and decomposition scale is selected is a time-domain waveform of a fixed frequency segment, which contains frequency The composition is only related to the analysis frequency of the signal, but has nothing to do with the signal itself, so from this point of view, the wavelet transform does not have adaptive signal decomposition characteristics

Method used

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  • Tap changer vibration signal noise reduction method based on empirical mode decomposition EMD
  • Tap changer vibration signal noise reduction method based on empirical mode decomposition EMD
  • Tap changer vibration signal noise reduction method based on empirical mode decomposition EMD

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Embodiment

[0069] Simulation experiment on CMIII-500-63B-10193W tap changer. This tap changer is a three-phase Y connection with a maximum of 19 tap positions. The vibration sensor adopts LC0151 piezoelectric acceleration sensor with high resolution and strong anti-interference ability. In the present invention, the vibration sensor is installed on the top of the tap changer, the vibration signal picked up at this position has less high-frequency attenuation and the signal is more complete. Vibration signals in the normal state of the OLTC and vibration signals in the fault state (OLTC contact loosening and contact falling off) are collected through the acceleration sensor.

[0070] Such as figure 1 Shown is a flow chart of the present invention based on empirical mode decomposition EMD decomposition switch vibration signal noise reduction method. First, empirical mode decomposition (EMD) is performed on the collected vibration signal of the tap changer to obtain the IMF component; th...

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Abstract

The invention discloses a tap changer vibration signal noise reduction method based on EMD. The method comprises the steps of: 1) collecting vibration signals in normal state and vibration signals infault state of an on-load tap changer (OLTC) through an acceleration sensor; 2) decomposing the collected vibration signals using the Empirical Mode Decomposition (EMD) algorithm to obtain IMF components; and 3) performing noise reduction process on the first few IMF components obtained by the EMD decomposition using a method based on EMD threshold noise reduction and performing noise reduction process on the remaining IMF components using Savitzky-Golay filter. According to the tap changer vibration signal noise reduction method, experimental data reveal that according to the tap changer vibration signal noise reduction method, a better noise reduction effect to the vibration signal of the tap changer can be achieved.

Description

technical field [0001] The invention relates to the technical field of on-load tap-changer fault diagnosis, in particular to a method for processing vibration signals of an on-load tap-changer OLTC based on empirical mode decomposition (EMD). Background technique [0002] As one of the core components of the transformer, the transformer on-load tap changer OLTC plays an important role in stabilizing the load center voltage, adjusting the reactive power flow, and increasing the flexibility of power grid dispatching in the power system. During the operation of the on-load tap-changer, the collision or friction between the mechanism parts will generate vibration signals, which contain rich equipment status information. However, the vibration signals collected on site often contain abnormal data and various noises, which will affect the results of vibration signal analysis. Therefore, before analyzing the vibration signal, it is very important to select a suitable noise reducti...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01H17/00G06K9/00
CPCG01H17/00G06F2218/06
Inventor 司小庆张勇陈冰冰徐艳马宏忠王梁王春宁许洪华徐礼浩高沁吕桂萍
Owner JIANGSU ELECTRIC POWER CO
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