Losses in DC Machines
By Sunil Saharan · 13 Jan 2011 · updated 12 Mar 2018 · 23,137 views
This article discuss various types of losses that occurs in DC Machines. It include Copper losses, iron losses, brush losses, mechanical losses, stray-load losses.
Hello Friends,
We know that no system is perfect in this world. Every system has some kind of unwanted loss of input. The form of this drop may vary from system to system but in every system it is called a loss. Similar is the case with the DC Machines either motor or generator. The whole input power is never converted into the output power. The difference between input power and output power is called loss.
In a DC Machine losses are classified into five main categories :
- Copper Losses or Electrical Losses
- Core Losses or Iron Losses
- Brush Losses
- Mechanical Losses
- Stray-Load Losses
Copper Losses or Electrical Losses
These losses are the winding losses because these occurs in the winding of the machine. The copper or electrical are present because of the resistance of the winding. Currents flowing through these windings produce ohmic losses (i.e. I2R losses). The windings that may be present addition to Armature winding are the field windings, inter-pole and compensating windings.- Armature current losses = Ia2Ra, where Ia is Armature current and Ra is Armature Resistance. These losses are about 30% of total full-load losses.
- Copper losses in the shunt field of a shunt machine =Ish2Rsh where Ish is the current in the shunt field and Rsh is the resistance of the shunt field winding. The shunt regulating resistance is included in Rsh.
- Copper loss in the series field of a series machine = Ise2Rse where Ise is the current through the series field winding and Rse is the resistance of the series field winding.
- In a compound machine, both shunt and series field losses occur. There losses are about 20% of full load losses.
- Copper loss in interpole windings =Ia2Ri where Ri is resistance of interpole winding.
- Copper loss in compensating windings =Ia2Rc where Rc is resistance of compensating winding.