Title :
Estimation of Series Capacitance for a Three-Phase Transformer Winding From Its Measured Frequency Response
Author :
Pramanik, Sarah ; Satish, L.
Author_Institution :
Dept. of Electr. Eng., Indian Inst. of Sci., Bangalore, India
Abstract :
Recently, authors published a method to indirectly measure series capacitance (Cs) of a single, isolated, uniformly wound transformer winding, from its measured frequency response. The next step was to implement it on an actual three-phase transformer. This task is not as straightforward as it might appear at first glance, since the measured frequency response on a three-phase transformer is influenced by nontested windings and their terminal connections, core, tank, etc. To extract the correct value of Cs from this composite frequency response, the formulation has to be reworked to first identify all significant influences and then include their effects. Initially, the modified method and experimental results on a three-phase transformer (4 MVA, 33 kV/433 V) are presented along with results on the winding considered in isolation (for cross validation). Later, the method is directly implemented on another three-phase unit (3.5 MVA, 13.8 kV/765 V) to show repeatability.
Keywords :
frequency response; transformer windings; apparent power 3.5 MVA; apparent power 4 MVA; composite frequency response; measured frequency response; nontested windings; series capacitance estimation; series capacitance measurement; single-isolated-uniformly-wound transformer winding; terminal connection; three-phase transformer winding; voltage 13.8 kV; voltage 33 kV; voltage 433 V; voltage 765 V; Capacitance; Capacitance measurement; Frequency response; Phase transformers; Three-phase electric power; Windings; Frequency response; frequency-response analysis (FRA); high-voltage (HV) winding; series capacitance; three-phase transformers;
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2013.2260772