IEEE Transactions on Power Delivery · 2005 · 200 citations · 12 references
Array ProcessingElectrical EngineeringEngineeringSensor ArrayGlow DischargeElectrical TransmissionAntennaPd SourceRadio CommunicationPartial DischargesComputational ElectromagneticsRadiometric LocationInstrumentationGas Discharge PlasmaRadio PropagationSignal ProcessingPd WavefrontElectromagnetic Compatibility
Partial discharges (PD) generate wideband radio frequency interference and, consequently, can be detected using radio receiving equipment. Due to the advances in ultra-high-speed sampling equipment, it is possible to accurately measure the propagation of the PD wavefront as it passes through a 4 element antenna array. From these measurements, the three-dimensional position of the PD source can be calculated using an iterative algorithm. The locating equipment is suitable for use within the vicinity of energized high-voltage plant and can locate sources up to 15 m from the array. Results are presented showing the location ability of the equipment under laboratory and field conditions. A significant advantage is the ability to detect PD sources in energized plant without the need for outages or electrical connections.
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