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Objectives • Explain mutual inductance • Describe how a transformer is constructed and how it works • Explain how a step-up transformer works • Explain how a step-down transformer works • Discuss the effect of a resistive load across the secondary winding • Discuss the concept of a reflected load in a transformer • Discuss impedance matching with transformers • Explain how the transformer acts as an isolation device • Describe a practical transformer
There are many devices such as three-phase ac generator, transformer etc., which are usually used in a power station to generate and supply electrical power to a power system network. In the power station, the three-phase ac generator generates a three-phase alternating voltage in the range between 11 and 20 kV. The magnitude of the generated voltage is increased to 120 kV or more by means of a power transformer. This higher magnitude of voltage is then transmitted to the grid substation by a three-phase transmission lines. A lower line voltage of 415 V is achieved by stepping down either from the 11 or 33 kV lines by a distribution transformer. In these cases, a three-phase transformer is used in either to step-up or step-down the voltage. Since a transformer plays a vital role in feeding an electrical network with the required voltage, it becomes an important requirement of a power system engineer to understand the fundamental details about a transformer along with its analytical behavior in the circuit domain. This chapter is dedicated towards this goal. On the onset of this discussion it is worth mentioning that a transformer, irrespective of its type, contains the following characteristics (i) it has no moving parts, (ii) no electrical connection between the primary and secondary windings, (iii) windings are magnetically coupled, (iv) rugged and durable in construction, (v) efficiency is very high i.e., more than 95 %, and (vi) frequency is unchanged.
Electrical Installations & Safety Course - Topic 5: Distribution Transformers
This chapter reviews several aspects related to transformers, including transformer losses, loading characteristics, selection criteria for pad-mounted transformers, transformer cooling, interpretation of tests on transformers and oil, and capacitors.
TRANSFORMER: The transformer, which is made up of two or more coils or windings linked magnetically, with or without a core to shape and enhance the magnetic flux, is used in many applications to transform voltages, current, and impedance, and to isolate circuits from each other electrically. Transformers have no moving parts and rely on the interaction between electrical and magnetic phenomena for operation.
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