Self-adaptive lightning stroke interference identification method by using pole line voltage traveling wave
A technology of interference identification and voltage traveling wave, applied in the direction of measuring electricity, measuring electrical variables, measuring devices, etc. The effect of simple method and easy extraction
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Embodiment 1
[0032] Embodiment 1: The simulation system of ±800kV DC transmission line is as follows figure 1 shown. A lightning strike occurred 550km away from the M terminal on the positive line, and the lightning protection line was not faulty.
[0033] According to the above step (3), the pole-line voltage within the 1ms time window of the test data is projected on the PCA space, and the test data is obtained in the PCA space. 1 Axis and PC 2 The projected value of (q′ 1 ,q′ 2 ).
[0034] According to step (4), the projection value of the test data (q' 1 ,q′ 2 ) and each cluster center N 1 (q 1 ,q 2 ), N 2 (q 1 ,q 2 ), N 3 (q 1 ,q 2 ) and N 4 (q 1 ,q 2 ) Euclidean distances are d 1 =4.9617×10 4 , d2 =4.0782×10 4 , d 3 =3.2984×10 4 , d 4 = 446.8166. According to step (5) and step (6), get d min = d 4 , it can be judged that it is lightning strike interference.
Embodiment 2
[0035] Embodiment 2: The simulation system of ±800kV DC transmission line is as follows figure 1 shown. A lightning strike occurs at a distance of 980km from the M terminal to the positive pole line, and the lightning protection line is not faulty.
[0036] According to the above step (3), the pole-line voltage within the 1ms time window of the test data is projected on the PCA space, and the test data is obtained in the PCA space. 1 Axis and PC 2 The projected value of (q′ 1 ,q′ 2 ).
[0037] According to step (4), the projection value of the test data (q' 1 ,q′ 2 ) and each cluster center N 1 (q 1 ,q 2 ), N 2 (q 1 ,q 2 ), N 3 (q 1 ,q 2 ) and N 4 (q 1 ,q 2 ) Euclidean distances are d 1 =2.2249×10 4 , d 2 =1.1328×10 4 , d 3 =4.4948×10 4 , d 4 =2.9831×10 4 . According to step (5) and step (6), get d min = d 2 , it can be judged that it is a lightning strike fault.
Embodiment 3
[0038] Embodiment 3: The simulation system of ±800kV DC transmission line is as follows figure 1 shown. The positive line is 120km away from the M terminal, and the lightning protection line is not faulty.
[0039] According to the above step (3), the pole-line voltage within the 1ms time window of the test data is projected on the PCA space, and the test data is obtained in the PCA space. 1 Axis and PC 2 The projected value of (q′ 1 ,q′ 2 ).
[0040] According to step (4), the projection value of the test data (q' 1 ,q′ 2 ) and each cluster center N 1 (q 1 ,q 2 ), N 2 (q 1 ,q 2 ), N 3 (q 1 ,q 2 ) and N 4 (q 1 ,q 2 ) Euclidean distances are d 1 =4.7967×10 4 , d 2 =4.007×10 4 , d 3 =100.7772, d 4 =3.5452×10 3 . According to step (5) and step (6), get d min = d 3 , it can be judged that it is lightning strike interference.
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