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A UHF Sensor Based Partial Discharge Monitoring System for Air Insulated Electrical Substations

Sourav Dhara, Chiranjib Koley, S. Chakravorti

2020IEEE Transactions on Power Delivery28 citationsDOI

Abstract

A Partial Discharge (PD) monitoring system for Air Insulated Substations (AIS) has been developed for monitoring of partial discharge activities of various insulators and insulating media that are distributed over an electrical substation. The proposed system utilizes four UHF (ultra-high frequency) sensors, which are to be placed around the area of interest so that any impulsive UHF signal originated from PD activity can be captured and subsequently processed for detection and localization of multiple PD sources. To improve the localization accuracy and to improve the detection specificity, i.e., to eliminate false impulsive UHF signals originated from other sources, two novel approaches, namely, Nearest-Neighbour and Probabilistic Grid-Search are proposed, which utilize the physical layout of the AIS to identify most probable PD source locations. The proposed algorithm can accurately find the PD source locations even in the presence of high time-delay-of-arrival (TDOA) estimation error by making necessary corrections in the PD source location estimation. The proposed algorithm has been field trialed in a medium-size distribution substation. A detailed comparative study with the conventionally used PD source localization approach in different extreme situations has been performed with the help of simulation, laboratory as well as field-based testing. The obtained results are worthwhile for supporting the widespread implementation of the proposed method.

Topics & Concepts

Ultra high frequencyPartial dischargeMultilaterationProbabilistic logicReal-time computingElectronic engineeringComputer scienceElectrical engineeringEngineeringVoltageArtificial intelligenceNode (physics)Structural engineeringHigh voltage insulation and dielectric phenomenaIndoor and Outdoor Localization TechnologiesUnderwater Vehicles and Communication Systems
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