Positive Sequence Voltage using A-Phase EMF and Positive Sequence Current(LLF) Solution

STEP 0: Pre-Calculation Summary
Formula Used
Positive Sequence Voltage = A Phase EMF-Positive Sequence Impedance*Positive Sequence Current
V1 = Ea-Z1*I1
This formula uses 4 Variables
Variables Used
Positive Sequence Voltage - (Measured in Volt) - Positive Sequence Voltage consists of balanced three-phase voltage and current phasors which are exactly at 120 degrees apart rotating counterclockwise in ABC rotation.
A Phase EMF - (Measured in Volt) - A phase EMF is defined as the electromagnetic force of the a-phase in open conductor fault.
Positive Sequence Impedance - (Measured in Ohm) - Positive Sequence Impedance consists of balanced three-phase voltage and current phasors which are exactly at 120 degrees apart rotating counterclockwise in ABC rotation.
Positive Sequence Current - (Measured in Ampere) - Positive Sequence Current consists of balanced three-phase voltage and current phasors which are exactly at 120 degrees apart rotating counterclockwise in ABC rotation.
STEP 1: Convert Input(s) to Base Unit
A Phase EMF: 29.38 Volt --> 29.38 Volt No Conversion Required
Positive Sequence Impedance: 7.94 Ohm --> 7.94 Ohm No Conversion Required
Positive Sequence Current: 2.001 Ampere --> 2.001 Ampere No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
V1 = Ea-Z1*I1 --> 29.38-7.94*2.001
Evaluating ... ...
V1 = 13.49206
STEP 3: Convert Result to Output's Unit
13.49206 Volt --> No Conversion Required
FINAL ANSWER
13.49206 Volt <-- Positive Sequence Voltage
(Calculation completed in 00.008 seconds)

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​ LaTeX ​ Go B Phase Voltage = C Phase Voltage-(Fault Impedance*C Phase Current)
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​ LaTeX ​ Go B Phase Voltage = (Fault Impedance*B Phase Current)+C Phase Voltage
C-Phase Voltage (LLF)
​ LaTeX ​ Go C Phase Voltage = B Phase Voltage-(Fault Impedance*B Phase Current)

Positive Sequence Voltage using A-Phase EMF and Positive Sequence Current(LLF) Formula

​LaTeX ​Go
Positive Sequence Voltage = A Phase EMF-Positive Sequence Impedance*Positive Sequence Current
V1 = Ea-Z1*I1

What is a line to line fault?

A line-to-line fault, also known as a three-phase fault, is a type of electrical fault that occurs in a three-phase power system. This type of fault occurs when a failure occurs between two phases of the power system, causing a current to flow from one phase to the other.

How to Calculate Positive Sequence Voltage using A-Phase EMF and Positive Sequence Current(LLF)?

Positive Sequence Voltage using A-Phase EMF and Positive Sequence Current(LLF) calculator uses Positive Sequence Voltage = A Phase EMF-Positive Sequence Impedance*Positive Sequence Current to calculate the Positive Sequence Voltage, The Positive Sequence Voltage using A-phase EMF and Positive Sequence Current(LLF) formula is defined as the voltage that is present in one phase of a three-phase electrical power system with respect to the positive sequence components of the system. Positive Sequence Voltage is denoted by V1 symbol.

How to calculate Positive Sequence Voltage using A-Phase EMF and Positive Sequence Current(LLF) using this online calculator? To use this online calculator for Positive Sequence Voltage using A-Phase EMF and Positive Sequence Current(LLF), enter A Phase EMF (Ea), Positive Sequence Impedance (Z1) & Positive Sequence Current (I1) and hit the calculate button. Here is how the Positive Sequence Voltage using A-Phase EMF and Positive Sequence Current(LLF) calculation can be explained with given input values -> 13.49206 = 29.38-7.94*2.001.

FAQ

What is Positive Sequence Voltage using A-Phase EMF and Positive Sequence Current(LLF)?
The Positive Sequence Voltage using A-phase EMF and Positive Sequence Current(LLF) formula is defined as the voltage that is present in one phase of a three-phase electrical power system with respect to the positive sequence components of the system and is represented as V1 = Ea-Z1*I1 or Positive Sequence Voltage = A Phase EMF-Positive Sequence Impedance*Positive Sequence Current. A phase EMF is defined as the electromagnetic force of the a-phase in open conductor fault, Positive Sequence Impedance consists of balanced three-phase voltage and current phasors which are exactly at 120 degrees apart rotating counterclockwise in ABC rotation & Positive Sequence Current consists of balanced three-phase voltage and current phasors which are exactly at 120 degrees apart rotating counterclockwise in ABC rotation.
How to calculate Positive Sequence Voltage using A-Phase EMF and Positive Sequence Current(LLF)?
The Positive Sequence Voltage using A-phase EMF and Positive Sequence Current(LLF) formula is defined as the voltage that is present in one phase of a three-phase electrical power system with respect to the positive sequence components of the system is calculated using Positive Sequence Voltage = A Phase EMF-Positive Sequence Impedance*Positive Sequence Current. To calculate Positive Sequence Voltage using A-Phase EMF and Positive Sequence Current(LLF), you need A Phase EMF (Ea), Positive Sequence Impedance (Z1) & Positive Sequence Current (I1). With our tool, you need to enter the respective value for A Phase EMF, Positive Sequence Impedance & Positive Sequence Current and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Positive Sequence Voltage?
In this formula, Positive Sequence Voltage uses A Phase EMF, Positive Sequence Impedance & Positive Sequence Current. We can use 2 other way(s) to calculate the same, which is/are as follows -
  • Positive Sequence Voltage = (Fault Impedance*Positive Sequence Current)+Negative Sequence Voltage
  • Positive Sequence Voltage = (A Phase EMF*Negative Sequence Impedance)/(Positive Sequence Impedance+Negative Sequence Impedance)
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