What is the purpose of changing taps on transformers during operation when there is an over or under voltage?

Encyclopedia
11/27/2024

Purpose of Changing Tap Settings When Overvoltage or Undervoltage Occurs in Transformer Operation

When a transformer experiences overvoltage or undervoltage during operation, the purpose of changing tap settings is to adjust the transformer's output voltage and bring it back to the normal operating range. Here is a detailed explanation:

Function of Transformer Tap Settings

Transformer tap settings are a mechanism used to regulate the output voltage of a transformer. By changing the position of the tap settings, the turns ratio between the primary and secondary windings can be adjusted, thereby altering the output voltage. Tap settings are typically located on the primary side (high-voltage side) of the transformer, but they can also be found on the secondary side (low-voltage side).

Overvoltage and Undervoltage Conditions

Overvoltage:

  • When the grid voltage is higher than the rated value, the transformer's output voltage will also increase, potentially leading to overload or damage to connected equipment.

  • Excessively high voltage can also cause aging of insulating materials and increase the risk of system failures.

Undervoltage:

  • When the grid voltage is lower than the rated value, the transformer's output voltage will decrease, potentially preventing connected equipment from functioning properly and affecting performance and efficiency.

  • Low voltage can also cause difficulties in starting motors and reduced brightness in lighting fixtures.

Purpose of Changing Tap Settings

Maintain Stable Output Voltage:

  • By adjusting the tap settings, the turns ratio of the transformer can be changed to bring the output voltage back to the normal operating range.

  • For example, if the input voltage is too high, the tap setting can be switched to a lower position, reducing the number of turns in the primary winding and thus lowering the output voltage. Conversely, if the input voltage is too low, the tap setting can be switched to a higher position, increasing the number of turns in the primary winding and thus raising the output voltage.

Protect Connected Equipment:

  • Maintaining a stable output voltage helps protect the equipment connected to the transformer, preventing damage or performance degradation caused by voltage fluctuations.

  • For sensitive equipment such as electronic devices and precision instruments, a stable voltage is particularly important.

Optimize System Performance:

  • Appropriate voltage levels can improve the efficiency and reliability of the entire power system.

  • For example, motors operate more efficiently at the correct voltage, and lighting fixtures perform better with the right voltage.

Operating Steps

Measure Voltage:

Use a voltmeter to measure the input and output voltages of the transformer to determine if there is an overvoltage or undervoltage condition.

Select Appropriate Tap Setting:

  • Based on the measurement results and the tap setting specifications on the transformer's nameplate, select the appropriate tap setting.

  • Typically, tap settings have multiple positions, each corresponding to a specific voltage ratio.

Switch Tap Settings:

  • Turn off the power to the transformer to ensure safety.

  • Manually or using specialized tools, switch the tap setting to the selected position.

  • Re-measure the voltage to confirm that the adjusted voltage is within the normal operating range.

Record and Maintain:

  • Record the time and position of the tap setting change for future reference and maintenance.

  • Regularly check the contact condition of the tap settings to ensure good connectivity.

Conclusion

The purpose of changing transformer tap settings is to adjust the output voltage and keep it within the normal operating range. This helps protect connected equipment, optimize system performance, and enhance the reliability and safety of the power system. 

Encyclopedia

The Electricity Encyclopedia is dedicated to accelerating the dissemination and application of electricity knowledge and adding impetus to the development and innovation of the electricity industry.

What are the reasons for low insulation at the low-voltage side of a dry-type transformer?
What are the reasons for low insulation at the low-voltage side of a dry-type transformer?
Hi everyone, I’m Felix, and I’ve been working in electrical equipment fault repair for 15 years.Over these years, I’ve traveled across factories, substations, and distribution rooms all over the country, troubleshooting and repairing all kinds of electrical equipment. Dry-type transformers are among the most common devices we deal with.Today, a friend asked me:“What does it mean when the low-voltage side of a dry-type transformer has low insulation resistance?”Great
Felix Spark
07/01/2025
What tests are required for dry-type transformers?
What tests are required for dry-type transformers?
1 Pre - commissioning InspectionAs a front - line tester, before formally commissioning a dry - type transformer, I need to carry out a comprehensive and systematic inspection. First, I conduct a visual inspection of the transformer body and its accessories, carefully checking for mechanical damage or deformation. Then, I check whether the leads of the high - and low - voltage windings are firmly connected and whether the bolt tightening torque meets the standard requirements (usually 40 - 60N&m
Oliver Watts
07/01/2025
What aspects need attention during the installation of dry-type transformers?
What aspects need attention during the installation of dry-type transformers?
1 Pre - installation PreparationAs a front - line installer, I know very well that the preparation work before installing a dry - type transformer must be thorough. First, I will carefully review the design drawings and technical documents, and check one by one the technical parameters such as the model specification, rated capacity, and voltage level of the transformer to ensure they are in full compliance with the design requirements. Then, I will conduct an unpacking inspection of the transfo
James
07/01/2025
What are the causes of dry-type transformers burning out during operation?
What are the causes of dry-type transformers burning out during operation?
1 Fault PhenomenonI am engaged in front - line fault maintenance work, and recently encountered problems with dry - type transformers. Dry - type transformers have a simple structure, are convenient for transportation, and easy for maintenance. They are widely used in power distribution places with relatively high environmental protection requirements. Because of their good fire - resistance, they can be installed in load - center areas to reduce voltage loss and power loss.The property manageme
Felix Spark
07/01/2025
Inquiry
Download
Experts Electrical is dedicated to serving the personnel in the global power industry.
Join Experts Electrical, not only can you discover power equipment and power knowledge, but also canhnd like - minded friends!