In Separately Excited Generator, the field windings are connected in:

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ALP CBT 2 Electrician Previous Paper: Held on 22 Jan 2019 Shift 1
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  1. close circuit
  2. Series with source
  3. open circuit
  4. Shunt with source

Answer (Detailed Solution Below)

Option 2 : Series with source
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Detailed Solution

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  • Separately excited dc generator requires an independent dc external source for energizing the field winding.
  • The field windings in a separately excited generator connected in series with dc external source.
  • The equivalent circuit representation under steady-state condition is shown in Figure.


The equations under steady-state are:

Vf = IfRt

Rt = Rf + Rext

Va = E + ILRa

IL = Ia

Where Vf = External dc source

If = Field winding current

Rt = Net resistance across external source side

Rf = Field winding resistance

Va = Voltage across load

E = Generated emf

IL = Load current

Ia = Armature current

Ra = Armature resistance

  • When the field current is held constant and the armature is rotating at a constant speed, the induced emf in an ideal separately excited dc generator is independent of the armature current.
  • As the load current IL increases, the terminal voltage decreases as indicated by a solid line. If the armature reaction is neglected, decrement in Va should be linear and equal to the voltage drop across Ra and carbon brushes.
  • However, if the generator is operated at the knee point in the magnetization curve the armature reaction causes a further drop in terminal voltage.

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