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SIMPLORER User Manual V6.0 - FER-a

SIMPLORER User Manual V6.0 - FER-a

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4<br />

5<br />

198 Modeling with Circuit Components<br />

Current Primary Side Phase 2 [A] I1_P2 real<br />

Current Primary Side Phase 3 [A] I1_P3 real<br />

Component Nodes<br />

Description Node Name Nature<br />

Primary Side Phase 1 Node A and B N1_P1_A, N1_P1_B electrical<br />

Open Side Phase 1 Node A and B NX_P1_A, NX_P1_B electrical<br />

Primary Side Phase 2 Node A and B N1_P2_A, N1_P2_B electrical<br />

Open Side Phase 2 Node A and B NX_P2_A, NX_P2_B electrical<br />

Primary Side Phase 3 Node A and B N1_P3_A, N1_P3_B electrical<br />

Open Side Phase 3 Node A and B NX_P3_A, NX_P3_B electrical<br />

Secondary Side of a Six-winding Transformer<br />

>>Basics>Circuit>Transformers>Three-Phase Systems<br />

The component represents a transformer based on the Spiro model. The use of this macro<br />

makes only sense with at least one macro of the primary side. Using the Primary Side and Secondary<br />

Side of a Six-winding-Transformer allows a simple construction of a Three-Phase<br />

Transformer with more windings.<br />

The terms primary and secondary are not to understand in the strict sense. It means only to<br />

combine exactly one macro of the primary side with at least one macro of the secondary side.<br />

For each coil make sure a network path exists to the ground node. The macro does not provide<br />

an access to the initial value of currents, these are assumed to be zero. Within the dialog you<br />

can define the leakage inductance, the equivalent resistance for iron losses and the winding<br />

resistance for the secondary side.<br />

For each coil make sure a network path exists to the ground node. The macro does not provide<br />

an access to the initial value of currents, these are assumed to be zero. Within the dialog you<br />

can define the main and leakage inductances, the equivalent resistances for iron losses and<br />

the winding resistances for each phase.<br />

W 2<br />

KTR = ------- with W1 = Windings Primary Side and<br />

W1 =<br />

Windings Secondary Side<br />

W 2

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