Method for manufacturing a composite bushing, and partial discharge diagnostic system for composite bushing
Disclosed are a method of manufacturing a composite bushing and a diagnostic system for the partial discharge of the composite bushing that may provide a thin-film ultra high frequency (UHF) sensor to a composite bushing, thereby measuring a partial discharge of a composite bushing and preventing a safety accident of the composite bushing that may occur due to the partial discharge.
1. A diagnostic system for a partial discharge of a composite bushing, the system comprising:
the composite bushing comprising a fiberglass reinforced plastics (FRP) tube, a thin-film ultra high frequency (UHF) sensor being provided on the FRP tube, and a silicone rubber being provided on the thin-film UHF sensor; and
an output unit being electrically connected to the thin-film UHF sensor to output a signal of the thin-film UHF sensor.
2. The system of claim 1 , wherein the FRP tube is formed in a circular shape or an oval shape, and is primer coated for stable attachment with the silicone rubber.
3. The system of claim 1 , wherein the thin-film UHF sensor is installed in an upper end of a lower flange of the FRB tube.
4. The system of claim 3 , wherein the thin-film UHF sensor is formed in the shape of a band.
5. The system of claim 1 , wherein the output unit withdraws an anode receiver output line and a cathode receiver output line of the thin-film UHF sensor.
6. The system of claim 5 , wherein each of the anode receiver output line and the cathode receiver output line is connected to a Bayonet Neil-Concelman (BNC) connector to sense the partial discharge of the composite bushing.
7. The system of claim 5 , wherein the cathode receiver output line is earthed with a flange of the composite bushing.