26.2
Equivalent circuits of practical single-phase two-winding transformers differ from their ideal counterparts due to winding resistance and finite core permeability.
Unconfined magnetic flux results in real and reactive power losses. Resistance and leakage reactance, in series with each winding, account for resistive losses, leakage flux-induced voltage drop, and reactive power loss, respectively.
Finite core permeability implies non-zero magnetomotive force in Ohm's law for magnetic circuits.
Rearranging and substituting the induced voltage across the left winding results in a magnetizing current, which lags the induced voltage by 90 degrees, represented by a shunt inductor.
Additionally, a shunt branch, represented by a resistor, carries the core loss current in phase with the induced voltage. When the right winding current is zero, two components in the left winding current - core loss and magnetizing currents - account for real power and reactive power losses.
These losses can be minimized using high-grade alloy steel. Three alternative equivalent circuits can be drawn, including when resistance and leakage reactance are referred to left winding, exciting current is neglected, and winding resistances are ignored.
De praktische equivalente schakelingen van enkelfasige twee-wikkelingstransformatoren vertonen significante afwijkingen van hun geïdealiseerde versies…
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