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Instrument Transformers01:23

Instrument Transformers

394
Instrument transformers, comprising voltage transformers (VTs) and current transformers (CTs), play crucial roles in power substations by providing isolated replicas of current or voltage for measurement and protection purposes. Voltage transformers reduce the primary voltage to levels suitable for relay operation and measurement, while current transformers scale down the primary current. The primary winding of a current transformer often consists of a single turn, achieved by threading the...
394
Three-Phase Short Circuit—Unloaded Synchronous Machine01:21

Three-Phase Short Circuit—Unloaded Synchronous Machine

609
Conducting a three-phase short circuit test on an unloaded synchronous machine helps understand its impact on the system. The AC fault current's oscillogram, with the DC offset removed, reveals that the waveform amplitude decreases from an initially high value to a steady-state level for one phase of the machine.
This behavior occurs due to the magnetic flux produced by the short-circuit armature currents. Initially, these currents follow high-reluctance paths but eventually shift to...
609
Power System Three-Phase Short Circuits01:21

Power System Three-Phase Short Circuits

473
Determining the subtransient fault current in a power system involves representing transformers by their leakage reactances, transmission lines by their equivalent series reactances, and synchronous machines as constant voltage sources behind their subtransient reactances. In this analysis, certain elements are excluded, such as winding resistances, series resistances, shunt admittances, delta-Y phase shifts, armature resistance, saturation, saliency, non-rotating impedance loads, and small...
473
Equivalent Circuits for Practical Transformers01:28

Equivalent Circuits for Practical Transformers

1.3K
The practical equivalent circuits of single-phase two-winding transformers exhibit significant deviations from their idealized versions due to the inherent properties of winding resistance and finite core permeability. These properties result in real and reactive power losses, affecting the transformer's performance. Understanding these deviations is crucial for designing more efficient transformers.
In a practical transformer, each winding exhibits resistance and leakage reactance. The...
1.3K
Series R—L Circuit Transients01:22

Series R—L Circuit Transients

320
In a series resistor-inductor (R-L) circuit, closing the switch at the start of the time period simulates a three-phase short circuit, a fault condition where all three phases of an unloaded synchronous machine are short-circuited. When there is no fault impedance and no initial current, the initial voltage is determined by the phase angle of the source voltage.
Using Kirchhoff's Voltage Law (KVL) to analyze this circuit helps determine the total asymmetrical fault current, which consists...
320
Transformers with Off-Nominal Turns Ratios01:25

Transformers with Off-Nominal Turns Ratios

454
In scenarios involving parallel transformers with disparate ratings, developing per-unit models requires accommodating off-nominal turns ratios. This situation arises when the selected base voltages are not proportional to the transformer’s voltage ratings. Consider a transformer where the rated voltages are related by the term a. If the chosen voltage bases satisfy a relationship involving term b, term c is defined as the ratio of these bases. This ratio is then substituted into the...
454

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Related Experiment Video

Updated: Dec 28, 2025

Author Spotlight: Simulation and Analysis of the Temperature Rise of Ring Main Unit Equipment
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Are Inductive Current Transformers Performance Really Affected by Actual Distorted Network Conditions? An

Alessandro Mingotti1, Lorenzo Peretto1, Lorenzo Bartolomei1

  • 1Department of Electrical, Electronic and Information Engineering - Guglielmo Marconi, Alma Mater Studiorum-University of Bologna, 40136 Bologna, Italy.

Sensors (Basel, Switzerland)
|February 14, 2020
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Summary

This study found that inductive current transformers (ICTs) perform well even under distorted network conditions. Standards need updating to reflect ICT accuracy in real-world, off-nominal scenarios.

Keywords:
accuracyactual waveformscomposite errorelectrical measurementsinductive current transformersmeasurement setuptotal harmonic distortionuncertainty

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Area of Science:

  • Electrical Engineering
  • Power Systems Analysis

Background:

  • Current standards lack uniform methods for testing inductive and low-power instrument transformers under distorted waveforms.
  • Expert disagreement exists on evaluating instrument transformer uncertainty during non-rated operating conditions.

Purpose of the Study:

  • To assess the impact of real-world distorted network conditions on inductive current transformer accuracy.
  • To propose improvements for existing instrument transformer standards.

Main Methods:

  • Collected actual power network current data.
  • Injected collected currents into two off-the-shelf inductive current transformers.
  • Evaluated transformer accuracy using the composite error index and an approximated version.

Main Results:

  • Tested inductive current transformers exhibited good performance despite nonlinearities under realistic non-rated network conditions.
  • The composite error index proved effective for evaluating accuracy in off-nominal scenarios.

Conclusions:

  • Inductive current transformers demonstrate robust accuracy even with network distortions.
  • The composite error index should be more widely adopted in standards for instrument transformer accuracy evaluation.