Direct current earth electrode line flashover fault circuit model, analysis method and system based on arcing of arcing horn
A fault analysis method, DC grounding technology, applied in the direction of the fault location, etc., can solve the problems of low insulation level, inconvenient use, complicated calculation process, etc., and achieve the effect of reducing work intensity, small calculation error, and simple process
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[0050] Whether the arc angle can establish a stable DC arc mainly depends on the mutual cooperation between the static volt-ampere curve of the stable arc between the arc angles and the load line of the linear source-port network equivalent to the circuit other than the arc, that is, the establishment of the arc angle. The premise of the arc is that there is an intersection point between the arc volt-ampere curve and the load line of a port network. Therefore, the basic idea of the present invention is to build a model around the electric arc and the external circuit loop, determine the arc current (DC freewheeling current) and voltage of the arc angle through the intersection of the two-part circuit volt-ampere curve and the load line, and then calculate the Electrical parameters in case of ground electrode line flashover fault.
[0051] Firstly, the DC ground electrode line flashover fault circuit model based on the striking arc angle proposed by the present invention is d...
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[0106] In order to enable those skilled in the art to understand the technical solution of the present invention more intuitively, a specific example is used below to illustrate.
[0107] Taking the ground electrode line of a DC transmission system as an example, under the operating condition of the ground electrode current of 1200A, there have been 3 incidents of lightning flashovers that caused the system to restart. The line parameters and fault conditions are as follows:
[0108] The total length of the ground electrode line l 1 =143.836, the distances from the faulty tower A, faulty tower B, and faulty tower C to the converter station are l 2A =12.984km, l 2B =22.12km, l 2C =30.627km, equivalent resistance R of grounding pole e =0.25Ω, the grounding resistance of faulty tower A, faulty tower B, and faulty tower C are respectively R tA =4.2Ω, R tB =4.7Ω, R tC =4.5Ω, the gap length l=38.5cm.
[0109] According to the above parameters, the parallel equivalent resista...
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