Frequency domain method of fault location of high-voltage direct current earth electrode line based on distributed parameter model
A distributed parameter model, high-voltage DC technology, applied in fault location, information technology support system, etc., can solve the problem of low voltage level of grounding pole line, large impact on safe operation of DC system, and large impact on stable operation of backbone grids of large power grids And other issues
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Embodiment 1
[0039] Example 1: 800kV DC grounding line such as figure 1 shown. The line parameters are as follows: the total length of the line is 80km, the DC impedance is 0.023165Ω / km, and the pole resistance is 0.2Ω. The data sampling rate is 6.4kHz. Ground electrode line l 2 A ground fault occurs 20km away from the measuring end, and the transition resistance is 20Ω.
[0040] (1) Using Fast Fourier Transform (FFT), the window function selects Chebyshev window, the length of the data window is N=128, and the measurement terminal is extracted f =600Hz electrical quantity dominates frequency components. Calculate the voltage electric current The magnitude and phase of , calculate the voltage and current along the line:
[0041]
[0042]
[0043] (2) Voltage electric current Calculate pole voltage and current
[0044]
[0045]
[0046] (3) Using pole point parameters and lines electric current deduce the line current .
[0047] (4) Use the voltag...
Embodiment 2
[0056] Example 2: 800kV DC grounding line such as figure 1 shown. The line parameters are as follows: the total length of the line is 80km, the DC impedance is 0.023165Ω / km, and the pole resistance is 0.2Ω. The data sampling rate is 6.4kHz. Ground electrode line l 2 A ground fault occurs 40km away from the measuring end, and the transition resistance is 4Ω.
[0057] (1) Using Fast Fourier Transform (FFT), the window function selects Chebyshev window, the length of the data window is N=128, and the measurement terminal is extracted f =600Hz electrical quantity dominates frequency components. Calculate the voltage electric current magnitude and phase, calculate the voltage and current along the
[0058]
[0059]
[0060] (2) Voltage electric current Calculate pole voltage and current
[0061]
[0062]
[0063] (3) Using pole point parameters and lines electric current deduce the line current .
[0064] (4) Use the voltage at the pole...
Embodiment 3
[0073] Example 3: 800kV DC grounding line such as figure 1 shown. The line parameters are as follows: the total length of the line is 80km, the DC impedance is 0.023165Ω / km, and the pole resistance is 0.2Ω. The data sampling rate is 6.4kHz. Ground electrode line l 2 A ground fault occurs 70km away from the measuring end, and the transition resistance is 4Ω.
[0074] (1) Using Fast Fourier Transform (FFT), the window function selects Chebyshev window, the length of the data window is N=128, and the measurement terminal is extracted f =600Hz electrical quantity dominates frequency components. Calculate the voltage electric current magnitude and phase, calculate the voltage and current along the
[0075]
[0076]
[0077] (2) Voltage electric current Calculate pole voltage and current
[0078]
[0079]
[0080] (3) Using pole point parameters and lines electric current deduce the line current .
[0081] (4) Use the voltage at the pol...
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