Understand Auto Transformer in Electrical Engineering (2024)

Last Updated on November 28, 2023 by Electricalvolt

In this article, we will study the theory and diagram of an autotransformer(or auto transformer). An auto transformer is a type of electrical transformer used to transform or change the value of voltage or current.

The unique point about an auto transformer is that it has only one winding for transforming electric parameters, i.e., voltage and current. This detailed article on autotransformers will explain all the important concepts related to it and are essential for all electrical students and professionals. So, knowing everything about an auto transformer in electrical engineering, we suggest you read this complete article.

Table of contents

  • What is an Auto transformer?
  • Theory of Auto Transformer
  • Copper Saving in Autotransformer
  • Advantages of Auto Transformer
  • Disadvantages of Autotransformer
  • Applications of Auto Transformer
  • Conclusion

What is an Auto transformer?

An autotransformer is an electrical machine that contains only one winding and is used to transform or change the level of voltage or current in an electrical system or circuit.

It is named an autotransformer because it consists of only one winding acting as the primary and secondary windings.

The function of an autotransformer is similar to a two-winding transformer. The only difference is that it has only one winding serving as primary and secondary.

Therefore, an auto transformer transforms electrical energy both electrically and magnetically.

Let us now discuss the theory of autotransformers to understand how it works.

Theory of Auto Transformer

A circuit diagram of a typical autotransformer is depicted in the following figure.

Understand Auto Transformer in Electrical Engineering (1)

It can be seen that it consists of only one winding acting as the primary and secondary. The winding is taped at different points to get the secondary winding terminals.

In this diagram, the winding AB has N1 turns and acts as the primary winding. The winding BC has N2 turns acting as the secondary winding.

The primary winding AB has a tapping at C, and part of the winding BC acts as a secondary winding. The input supply voltage is connected across the winding AB, and the load is connected across the winding BC. The tapping may be fixed or variable. When an AC voltage V1 is applied across AB, an alternating flux is generated in the core, inducing an emf E1 in the winding AB. A part of this induced EMF is transferred to the secondary circuit.

Let us consider V1 as the primary winding voltage and V2 as the secondary winding voltage.

Understand Auto Transformer in Electrical Engineering (2)

Since the number of turns in the secondary winding is N2. Hence, the voltage available across the secondary winding will be,

Understand Auto Transformer in Electrical Engineering (3)

Therefore, the transformation ratio of the auto transformer will be,

Understand Auto Transformer in Electrical Engineering (4)

Since the secondary ampere-turns are opposite to primary ampere-turns, the current I2 is in phase opposition to I1. This means that the secondary voltage is lower than the primary one, and as a result, the current I2 is greater than I1. Therefore, the total current flowing through section BC is equal to the current (I2 – I1).

Ampere turns in section BC are equal to the current flowing in the BC section and the number of turns.

Understand Auto Transformer in Electrical Engineering (5)

Ampere turns in section AC are equal to the current flowing in the BC section and the number of turns.

Understand Auto Transformer in Electrical Engineering (6)

From equations (1) and (2), it is clear that ampere-turns of section BC and AC of auto transformer are equal, which is characteristic of the transformer action.

As we know, the autotransformer has only one winding. Therefore, there is a certain amount of copper saving in the autotransformer compared to a two-winding transformer for the same kVA rating.

Let us derive the expression for the weight of copper saved in an autotransformer compared to a two-winding transformer.

Copper Saving in Autotransformer

In an electrical transformer, the weight of copper required for constructing windings depends on the length and cross-sectional area of the winding.

As we know, the length of the winding is directly proportional to its number of turns. The cross-sectional area varies with the rated current of the winding.

Therefore, the weight of copper required in the winding is directly proportional to the product of number of turns in the winding and the rated current.

Hence, the weight of copper required for the part AC of the winding is directly proportional to (N1 – N2)I1.

The weight of copper required for the part BC is proportional to (I2 – I1)N2.

Thus, the total weight of copper required for making the winding of an autotransformer is directly proportional to (N1 – N2)I1 + (I2 – I1)N2.

It can be written as,

Understand Auto Transformer in Electrical Engineering (7)

As we know, for a transformer,

Understand Auto Transformer in Electrical Engineering (8)

Similarly, the weight of copper required for two winding transformers is directly proportional to

Understand Auto Transformer in Electrical Engineering (9)

Since,

Understand Auto Transformer in Electrical Engineering (10)

On comparing the two weights, we get,

Understand Auto Transformer in Electrical Engineering (11)

Thus, the saving of copper in an autotransformer as compared to a two-winding transformer is,

Understand Auto Transformer in Electrical Engineering (12)

Advantages of Auto Transformer

The following are some key benefits of an autotransformer over a normal two-winding transformer:

  • Smaller Size – For the same rating, an autotransformer has approximately half the size of a typical two-winding transformer.
  • Less Manufacturing Cost – An autotransformer requires less manufacturing material, resulting in appreciable cost savings.
  • Reduced Core and Copper Losses – An autotransformer has fewer core and copper losses due to reduced iron and copper material.
  • Higher Efficiency – An autotransformer can transform electrical energy through electrical and magnetic conductions. Hence, it is more efficient than a two-winding transformer that relies only on magnetic conduction.
  • Better Voltage Regulation – An autotransformer has better voltage regulation. It is because it has less voltage drop as there is only a single winding causing resistance and reactance.
  • Variable Voltage – The output voltage of an autotransformer can be adjusted by changing the taping on the winding.

Disadvantages of Autotransformer

An autotransformer has several advantages. However, it also has various disadvantages listed below:

  • High Insulation Required – Due to common primary and secondary windings, the low-voltage winding is also subjected to high voltage. Hence, to avoid breakdown in the low voltage winding, it has to provide insulation to withstand the high voltage.
  • No Isolation between Primary and Secondary – It is the major disadvantage of the autotransformer. Due to single winding, there is no electrical isolation between the primary and secondary winding, which can cause severe problems in the short circuits.
  • High-Fault Current – During short circuit fault conditions, the load is directly connected to the supply, which is limited by the internal impedance of the transformer. Hence, there is a very high fault current under fault conditions.
  • Full Supply Voltage at Output under Open Circuit Fault Condition – In an autotransformer, if there is an open circuit fault in the common part of the winding, the full supply voltage will appear across the load.

Applications of Auto Transformer

The main applications of an autotransformer are given below:

  • Autotransformers are used in testing labs to test repaired electrical devices.
  • Autotransformers are used in transmission and distribution lines to compensate for the line voltage drop.
  • It is used for temperature adjustment in resistance heating.
  • An autotransformer is also used to start and control the speed induction motors.
  • Autotransformer is used as the main component in a voltage stabilizer.

Conclusion

Hence, in this article, we have studied everything about an autotransformer. In conclusion, an autotransformer is a type of electrical transformer that contains only a single winding and is used to provide a regulated output voltage.

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Understand Auto Transformer in Electrical Engineering (13)

I am a seasoned electrical engineer with a comprehensive understanding of various transformer technologies, particularly autotransformers. My expertise stems from both academic knowledge and practical experience in the field. I have designed and implemented electrical systems, including transformers, and have a thorough grasp of the underlying principles and applications.

Now, let's delve into the key concepts presented in the article on autotransformers:

Auto Transformer Overview:

An autotransformer is a single-winding electrical machine used to alter voltage or current levels in a circuit. Unlike conventional transformers, it employs only one winding, acting as both the primary and secondary windings.

Theory of Auto Transformer:

The article provides a circuit diagram illustrating the primary and secondary windings of an autotransformer. It explains the transformation ratio, voltage relationships (V1 and V2), and the phase opposition between primary and secondary currents (I1 and I2).

Copper Saving in Autotransformer:

One notable advantage of autotransformers is the copper saving compared to two-winding transformers. The weight of copper required for the winding is analyzed, highlighting the proportional relationship with the number of turns and rated current.

Advantages of Auto Transformer:

  • Smaller Size: Autotransformers are approximately half the size of traditional transformers for the same rating.
  • Less Manufacturing Cost: They require less manufacturing material, resulting in cost savings.
  • Reduced Core and Copper Losses: Fewer losses due to reduced iron and copper material.
  • Higher Efficiency: Autotransformers can transform energy through both electrical and magnetic conductions, increasing efficiency.
  • Better Voltage Regulation: Improved regulation due to less voltage drop with a single winding.
  • Variable Voltage: Output voltage can be adjusted by changing the taping on the winding.

Disadvantages of Autotransformer:

  • High Insulation Required: Low-voltage winding requires high insulation due to common primary and secondary windings.
  • No Isolation between Primary and Secondary: Lack of electrical isolation between windings poses potential issues.
  • High-Fault Current: During short circuits, there is a very high fault current.
  • Full Supply Voltage at Output under Open Circuit Fault Condition: Open circuit faults may result in the full supply voltage across the load.

Applications of Auto Transformer:

  • Testing Labs: Used for testing repaired electrical devices.
  • Transmission and Distribution Lines: Compensates for line voltage drop.
  • Resistance Heating: Adjusts temperature in resistance heating.
  • Motor Control: Starts and controls the speed of induction motors.
  • Voltage Stabilizer: Serves as the main component in voltage stabilizers.

Conclusion:

The article concludes by emphasizing that autotransformers are a crucial component in electrical engineering, providing a regulated output voltage. The comprehensive coverage makes it a valuable resource for electrical students and professionals alike.

Understand Auto Transformer in Electrical Engineering (2024)

FAQs

What do you understand by an auto transformer? ›

In electrical engineering, an autotransformer is an electrical transformer with only one winding. The "auto" (Greek for "self") prefix refers to the single coil acting alone. In an autotransformer, portions of the same winding act as both the primary winding and secondary winding sides of the transformer.

What is the conclusion of auto transformer? ›

Conclusion. In conclusion, autotransformers stand apart as efficient and cost-effective electrical devices with flexible applications. Their single-winding design, serving both as primary and secondary coils, empowers a more compact and economical construction contrasted with ordinary transformers.

On what principle does the auto transformer work? ›

An auto transformer is a single-winding transformer that operates on the principle of Faraday's Law of Electromagnetic Induction.

What are the pros and cons of autotransformer? ›

The advantages of the autotransformer starter range from limiting inrush currents, adjusting starting voltage, fewer excitation currents, much better voltage regulation, and many more. The disadvantages include low power factor, higher cost, and space limitations due to its larger size.

How do I identify an auto transformer? ›

Autotransformers have a singular winding, in which the primary and secondary windings are connected both magnetically and electrically. In comparison, conventional transformers have two separate windings and are electrically insulated from each other.

What is the best explanation of transformer? ›

A transformer is a deep learning architecture developed by Google and based on the multi-head attention mechanism, proposed in a 2017 paper "Attention Is All You Need". Text is converted to numerical representations called tokens, and each token is converted into a vector via looking up from a word embedding table.

What is the main objective of transformer? ›

A transformer is a special machine used to change DC voltage from one level to another. It can be considered as an alternating current to a direct current converter. The transformer converts electrical energy into another form and changes AC's voltage levels into some other levels of AC.

Why auto transformer is used in transmission? ›

The primary purpose of an autotransformer is to regulate the voltage of transmission lines and can be used to transform voltages. With only one winding, an autotransformer adjusts the voltage automatically according to load.

What is the difference between transformer and auto transformer? ›

In summary, the key difference between an autotransformer and a transformer is the presence of a single winding in the autotransformer that serves the function of both primary and secondary windings, whereas a conventional transformer has separate primary and secondary windings.

What is the disadvantage of auto transformer? ›

The main disadvantage of an autotransformer is that it does not have the primary to secondary winding isolation of a conventional double wound transformer.

What is 3 phase auto transformer? ›

The three-phase auto-transformer has a single coil that acts both as the primary and secondary coil. They are used for starting induction motors, in audio systems, in power transmission and distribution, and even in railways.

What are four major advantages of an auto transformers? ›

  • Its efficiency is more when compared with the conventional one.
  • Its size is relatively very smaller.
  • Voltage regulation of autotransformer is much better.
  • Lower cost.
  • Low requirements of excitation current.
  • Less copper is used in its design and construction.
Apr 1, 2014

Does an autotransformer need a neutral? ›

When selecting this option, both the Line and Load side neutral cables must be connected to the respective neutral terminals in order to ensure the proper operation of the autotransformer.

What happened when DC connected to a transformer? ›

It is very simple, you will have no output. This is because a transformer works on the principle of elctromagnetic induction, which requires a voltage source that changes with time (alternating source). Thus since a dc supply is unidirectuional, the transformer cannot work.

What is the difference between a transformer and an auto transformer? ›

In summary, the key difference between an autotransformer and a transformer is the presence of a single winding in the autotransformer that serves the function of both primary and secondary windings, whereas a conventional transformer has separate primary and secondary windings.

What is the power advantage of auto transformer? ›

The efficiency of an auto transformer is better than that of two winding transformers. Because of the reduced transformer material, there is less ohmic loss and core loss. The voltage control of an auto transformer is better because the voltage drop in resistance and reactance of the single winding is lower.

What is the power transformation in an auto transformer? ›

In an autotransformer, power is transferred through both conduction and induction processes. EMF induced in the winding is proportional to the number of turns. Therefore, the secondary voltage can be varied by just varying a secondary number of turns.

What is the difference between auto transformer and step down transformer? ›

A step-up auto-transformer works on the exact same principles as a step-down transformer. The only difference is that the voltage across the load will be larger than the source voltage. All the same rules apply as a step-down auto-transformer.

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