Role of Transformer in Transmission System : Technical Aspects
By Sunil Saharan · 02 Mar 2013 · updated 14 Mar 2018 · 2,524 views
This article explains technical aspects of transmission system currently being used for electrical power transmission. Its underlines the role of Electrical Transformers in electrical power transmission system.
Why we need high voltage in transmission system ? We have discussed Why we need Transmission System and in current article we'll discuss why a very high voltage is chosen for transmission of electric power transfer from generating point to load centers ?
Role of Transformer in Transmission System
Transformer are used to raise the level of voltage that is generated at generated point and transformers are also used to reduce the level of voltage near load centers as discussed in Basics of Transformers and Working of Transformer.Why High Voltage is Used in Transmission System
Why very high voltage is chosen for transmission ? This is the question that struck into the mind of not only an electrical engineering student but also the mind of a common person. Here are some technical reasons why we choose very high voltage for transmission ? Following are the benefits of using very high voltage for transmission :- Small Conductor Size: Let us consider we have to transmit a power of W watts over a distance L. Now consider two situations a) Power is being transmitted in line at V volts a) Power is being transmitted in line at 2V volts We know that P=VI cos Φ, Where P=Power in the system V=Voltage of the line I=Current in the line CosΦ=Power factor of line under consideration [ Considering it constant/same in both cases ] in first case I=P/V=k(say) but for second case I=P/2v=k/2. Hence double the voltage level half will be the current in the line. We know that for a small current small area of cross section of the conductor is required as transmission lines are designed at a constant current density (Current/Area). This shows that increase in transmission voltage will result in reduction of conductor area and hence conductor weight. Thus an increase in voltage level will result in saving of conductor cost.
- Reduction In Copper Losses : We know that Copper Losses, PCu = I2R Where, PCu = Copper loss in transmission Line I=Current in Line and R= Resistance of Line. Now resistance of line is constant (once installed) so if we increase voltage level then this will reduce the copper losses in the transmission line which further result in saving of power and ultimately saving of money.
- Better Voltage Regulation : Voltage Regulation is given by the formula, VReg=(Vnl-Vfl)/Vfl Where Vnl= Voltage at no load Vfl= Voltage at full load For a transmission line Vfl=Vnl-VDrop VDrop being drop at the transmission line and this is given by VDrop=I*R, now if I is reduced in line then Voltage regulation will be reduced and operation of machines and line will be good.