Voltage Regulation in Transmission Line Formula

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Voltage Regulation in a short transmission line refers to the ability of the line to maintain consistent voltage levels at the load despite fluctuations in source voltage or load impedance. Check FAQs
%V=(Vs-VrVr)100
%V - Voltage Regulation?Vs - Sending End Voltage?Vr - Receiving End Voltage?

Voltage Regulation in Transmission Line Example

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With units
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Here is how the Voltage Regulation in Transmission Line equation looks like with Values.

Here is how the Voltage Regulation in Transmission Line equation looks like with Units.

Here is how the Voltage Regulation in Transmission Line equation looks like.

5.2632Edit=(400Edit-380Edit380Edit)100
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Voltage Regulation in Transmission Line Solution

Follow our step by step solution on how to calculate Voltage Regulation in Transmission Line?

FIRST Step Consider the formula
%V=(Vs-VrVr)100
Next Step Substitute values of Variables
%V=(400V-380V380V)100
Next Step Prepare to Evaluate
%V=(400-380380)100
Next Step Evaluate
%V=5.26315789473684
LAST Step Rounding Answer
%V=5.2632

Voltage Regulation in Transmission Line Formula Elements

Variables
Voltage Regulation
Voltage Regulation in a short transmission line refers to the ability of the line to maintain consistent voltage levels at the load despite fluctuations in source voltage or load impedance.
Symbol: %V
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Sending End Voltage
Sending End Voltage is the voltage at the sending end of a short transmission line.
Symbol: Vs
Measurement: Electric PotentialUnit: V
Note: Value can be positive or negative.
Receiving End Voltage
Receiving End Voltage is the voltage developed at the receiving end of a short transmission line.
Symbol: Vr
Measurement: Electric PotentialUnit: V
Note: Value can be positive or negative.

Other formulas in Line Parameters category

​Go Resistance using Losses (STL)
R=Ploss3Ir2
​Go Losses using Transmission Efficiency (STL)
Ploss=(3VrIrcos(Φr)η)-(3VrIrcos(Φr))
​Go Transmission Efficiency (STL)
η=VrIrcos(Φr)VsIscos(Φs)
​Go Impedance (STL)
Z=Vs-VrIr

How to Evaluate Voltage Regulation in Transmission Line?

Voltage Regulation in Transmission Line evaluator uses Voltage Regulation = ((Sending End Voltage-Receiving End Voltage)/Receiving End Voltage)*100 to evaluate the Voltage Regulation, Voltage Regulation in Transmission Line electrical potential difference between the line's terminals. In short lines, voltage remains relatively constant along the line due to low impedance, resulting in minimal voltage drop. This facilitates efficient power transfer from the source to the load with minimal losses. Voltage Regulation is denoted by %V symbol.

How to evaluate Voltage Regulation in Transmission Line using this online evaluator? To use this online evaluator for Voltage Regulation in Transmission Line, enter Sending End Voltage (Vs) & Receiving End Voltage (Vr) and hit the calculate button.

FAQs on Voltage Regulation in Transmission Line

What is the formula to find Voltage Regulation in Transmission Line?
The formula of Voltage Regulation in Transmission Line is expressed as Voltage Regulation = ((Sending End Voltage-Receiving End Voltage)/Receiving End Voltage)*100. Here is an example- 5.263158 = ((400-380)/380)*100.
How to calculate Voltage Regulation in Transmission Line?
With Sending End Voltage (Vs) & Receiving End Voltage (Vr) we can find Voltage Regulation in Transmission Line using the formula - Voltage Regulation = ((Sending End Voltage-Receiving End Voltage)/Receiving End Voltage)*100.
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