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Zero Sequence Voltage LG consists of a balanced three-phase voltage and current, phasors of which all have the same phase angles and rotate counterclockwise together. Check FAQs
V0(lg)=(3Zf(lg)I1(lg))-V2(lg)-V1(lg)
V0(lg) - Zero Sequence Voltage LG?Zf(lg) - Fault Impedance LG?I1(lg) - Positive Sequence Current LG?V2(lg) - Negative Sequence Voltage LG?V1(lg) - Positive Sequence Voltage LG?

Zero Sequence Voltage using Positive Sequence Current Example

With values
With units
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Here is how the Zero Sequence Voltage using Positive Sequence Current equation looks like with Values.

Here is how the Zero Sequence Voltage using Positive Sequence Current equation looks like with Units.

Here is how the Zero Sequence Voltage using Positive Sequence Current equation looks like.

-24.5515Edit=(31.5Edit2.001Edit)-16.056Edit-17.5Edit
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Zero Sequence Voltage using Positive Sequence Current Solution

Follow our step by step solution on how to calculate Zero Sequence Voltage using Positive Sequence Current?

FIRST Step Consider the formula
V0(lg)=(3Zf(lg)I1(lg))-V2(lg)-V1(lg)
Next Step Substitute values of Variables
V0(lg)=(31.5Ω2.001A)-16.056V-17.5V
Next Step Prepare to Evaluate
V0(lg)=(31.52.001)-16.056-17.5
LAST Step Evaluate
V0(lg)=-24.5515V

Zero Sequence Voltage using Positive Sequence Current Formula Elements

Variables
Zero Sequence Voltage LG
Zero Sequence Voltage LG consists of a balanced three-phase voltage and current, phasors of which all have the same phase angles and rotate counterclockwise together.
Symbol: V0(lg)
Measurement: Electric PotentialUnit: V
Note: Value can be positive or negative.
Fault Impedance LG
Fault Impedance LG is a measure of the resistance and reactance in an electrical circuit that is used to calculate the fault current that flows through the circuit in the event of a fault.
Symbol: Zf(lg)
Measurement: Electric ResistanceUnit: Ω
Note: Value should be greater than 0.
Positive Sequence Current LG
Positive Sequence Current LG consists of balanced three-phase voltage and current phasors which are exactly at 120 degrees apart rotating counterclockwise in ABC rotation.
Symbol: I1(lg)
Measurement: Electric CurrentUnit: A
Note: Value can be positive or negative.
Negative Sequence Voltage LG
Negative Sequence Voltage LG consists of balanced three-phase voltage and current phasors which are exactly at 120 degrees apart rotating counterclockwise in ACB rotation.
Symbol: V2(lg)
Measurement: Electric PotentialUnit: V
Note: Value can be positive or negative.
Positive Sequence Voltage LG
Positive Sequence Voltage LG consists of balanced three-phase voltage and current phasors which are exactly at 120 degrees apart rotating counterclockwise in ABC rotation.
Symbol: V1(lg)
Measurement: Electric PotentialUnit: V
Note: Value should be greater than 0.

Other Formulas to find Zero Sequence Voltage LG

​Go Zero Sequence Voltage using A-Phase Current (LGF)
V0(lg)=(Zf(lg)Ia(lg))-(V2(lg))-(V1(lg))
​Go Zero Sequence Voltage for LGF
V0(lg)=-Z0(lg)I0(lg)
​Go Zero Sequence Voltage using Phase Voltages(LGF)
V0(lg)=13(Zf(lg)Ia(lg)+Vb(lg)+Vc(lg))

Other formulas in Voltage and EMF category

​Go A-Phase Voltage(LGF)
Va(lg)=Zf(lg)Ia(lg)
​Go Positive Sequence Voltage for L-G-F
V1(lg)=E1(lg)-(Z1(lg)I1(lg))
​Go A-Phase EMF using Positive Sequence Voltage (LGF)
Ea(lg)=V1(lg)+(Z1(lg)I1(lg))
​Go A-Phase EMF using Zero Sequence Current (LGF)
Ea(lg)=I0(lg)((3Zf(lg))+Z0(lg)+Z1(lg)+Z2(lg))

How to Evaluate Zero Sequence Voltage using Positive Sequence Current?

Zero Sequence Voltage using Positive Sequence Current evaluator uses Zero Sequence Voltage LG = (3*Fault Impedance LG*Positive Sequence Current LG)-Negative Sequence Voltage LG-Positive Sequence Voltage LG to evaluate the Zero Sequence Voltage LG, The Zero Sequence Voltage using positive Sequence current formula consists of a balanced three-phase voltage and current, phasors of which all have the same phase angles and rotate counterclockwise together. Zero Sequence Voltage LG is denoted by V0(lg) symbol.

How to evaluate Zero Sequence Voltage using Positive Sequence Current using this online evaluator? To use this online evaluator for Zero Sequence Voltage using Positive Sequence Current, enter Fault Impedance LG (Zf(lg)), Positive Sequence Current LG (I1(lg)), Negative Sequence Voltage LG (V2(lg)) & Positive Sequence Voltage LG (V1(lg)) and hit the calculate button.

FAQs on Zero Sequence Voltage using Positive Sequence Current

What is the formula to find Zero Sequence Voltage using Positive Sequence Current?
The formula of Zero Sequence Voltage using Positive Sequence Current is expressed as Zero Sequence Voltage LG = (3*Fault Impedance LG*Positive Sequence Current LG)-Negative Sequence Voltage LG-Positive Sequence Voltage LG. Here is an example- -24.5515 = (3*1.5*2.001)-16.056-17.5.
How to calculate Zero Sequence Voltage using Positive Sequence Current?
With Fault Impedance LG (Zf(lg)), Positive Sequence Current LG (I1(lg)), Negative Sequence Voltage LG (V2(lg)) & Positive Sequence Voltage LG (V1(lg)) we can find Zero Sequence Voltage using Positive Sequence Current using the formula - Zero Sequence Voltage LG = (3*Fault Impedance LG*Positive Sequence Current LG)-Negative Sequence Voltage LG-Positive Sequence Voltage LG.
What are the other ways to Calculate Zero Sequence Voltage LG?
Here are the different ways to Calculate Zero Sequence Voltage LG-
  • Zero Sequence Voltage LG=(Fault Impedance LG*A-Phase Current LG)-(Negative Sequence Voltage LG)-(Positive Sequence Voltage LG)OpenImg
  • Zero Sequence Voltage LG=-Zero Sequence Impedance LG*Zero Sequence Current LGOpenImg
  • Zero Sequence Voltage LG=1/3*(Fault Impedance LG*A-Phase Current LG+B Phase Voltage LG+C Phase Voltage LG)OpenImg
Can the Zero Sequence Voltage using Positive Sequence Current be negative?
Yes, the Zero Sequence Voltage using Positive Sequence Current, measured in Electric Potential can be negative.
Which unit is used to measure Zero Sequence Voltage using Positive Sequence Current?
Zero Sequence Voltage using Positive Sequence Current is usually measured using the Volt[V] for Electric Potential. Millivolt[V], Microvolt[V], Nanovolt[V] are the few other units in which Zero Sequence Voltage using Positive Sequence Current can be measured.
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