Transformer Modeling for Three-Phase Distribution Network Analysis

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Institute of Electrical and Electronics Engineers Inc.

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This paper presents a symmetrical components approach for computing the phase-coordinates nodal admittance matrices of three-phase transformers, where each connection is comprised either of three single-phase units or one three-phase unit. The approach is based on assembling the symmetrical component circuits into the different three-phase connections; it can straightforwardly handle unsymmetrical transformer banks with different phase electrical characteristics or missing phases, and grounding impedances. The proposed approach easily accounts for the various clock numbers quoted in the British Standard (BS) and the International Electrotechnical Commission (IEC) Standard on power transformers; this presents an advantage as compared to classical phase-coordinates approaches that require defining a distinct connection matrix corresponding to each transformer vector group. © 2014 IEEE.

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Symmetrical components, Transformer bank, Transformer clock number, Transformer model, Transformer nodal admittance matrix, Transformer vector group, Clocks, Electric grounding, Electric network analysis, Power transformers, Nodal admittance matrix, Transformer modeling, Vector groups, Matrix algebra

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