Test method for radio interference excitation function of DC transmission line based on corona cage
A technology for DC transmission lines and radio interference, which is applied in the high voltage field, can solve the problems such as the lack of an equivalent method for testing the DC corona cage and the radio interference of transmission lines, and achieves the effect of short test time and shortened research period.
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Embodiment 1
[0053] Embodiment 1: as figure 1 Shown, the specific implementation method of the present invention is as follows:
[0054] S101. Calculate the capacitance C per unit length of the wire in the corona cage according to the parameters of the tested wire and the arrangement, the parameters of the corona cage, etc. c ;
[0055] C c = 2πε 0 / ln(R / r), (3)
[0056] In the formula, R is the radius of the corona cage, r is the radius of the wire, ε 0 is the permittivity of air.
[0057] S102. Taking the distance between the wire in the corona cage and the cage wall as the distance to measure, determine the position of the point around the wire of the transmission line and the distance between the wire and the transmission line that is equal to the measured distance, that is: determine that the shape of the wire around the transmission line is the same as that of the corona cage The position of the virtual box of ;
[0058] S103. Based on the electromagnetic field numerical calcu...
Embodiment 2
[0079] Embodiment 2: In order to verify the present invention, a scale model experiment system was set up in the laboratory, including a small corona cage experiment system and a scale circuit experiment system. The layout diagram of the experimental system and the electrical connection diagram of the corona cage experiment, such as Figure 2a , Figure 2b shown. Figure 2a , Figure 2b In the experimental system shown, the corona current of the corona cage and the scaled-scale line conductor are measured in the frequency domain by the coupling loop measurement system. In the experimental system, a high-voltage DC power supply causes a corona discharge on the wire. The high-voltage coupling capacitor of the coupling loop cooperates with the coupling circuit to couple the high-frequency component of the wire corona current to the low-voltage side. The coupling frequency is adjustable from 0.5MHz to 10MHz, and the impedance at the end of the coupling loop is 50Ω. The radio i...
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