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Receiving End Phase Angle is the difference between the phasor of the current and voltage at the receiving end of a short transmission line. Check FAQs
Φr=acos(ηVsIscos(Φs)IrVr)
Φr - Receiving End Phase Angle?η - Transmission Efficiency?Vs - Sending End Voltage?Is - Sending End Current?Φs - Sending End Phase Angle?Ir - Receiving End Current?Vr - Receiving End Voltage?

Receiving End Angle using Transmission Efficiency (STL) Example

With values
With units
Only example

Here is how the Receiving End Angle using Transmission Efficiency (STL) equation looks like with Values.

Here is how the Receiving End Angle using Transmission Efficiency (STL) equation looks like with Units.

Here is how the Receiving End Angle using Transmission Efficiency (STL) equation looks like.

75.0115Edit=acos(0.278Edit400Edit3.98Editcos(30Edit)3.9Edit380Edit)
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Receiving End Angle using Transmission Efficiency (STL) Solution

Follow our step by step solution on how to calculate Receiving End Angle using Transmission Efficiency (STL)?

FIRST Step Consider the formula
Φr=acos(ηVsIscos(Φs)IrVr)
Next Step Substitute values of Variables
Φr=acos(0.278400V3.98Acos(30°)3.9A380V)
Next Step Convert Units
Φr=acos(0.278400V3.98Acos(0.5236rad)3.9A380V)
Next Step Prepare to Evaluate
Φr=acos(0.2784003.98cos(0.5236)3.9380)
Next Step Evaluate
Φr=1.3091979572087rad
Next Step Convert to Output's Unit
Φr=75.0115174952215°
LAST Step Rounding Answer
Φr=75.0115°

Receiving End Angle using Transmission Efficiency (STL) Formula Elements

Variables
Functions
Receiving End Phase Angle
Receiving End Phase Angle is the difference between the phasor of the current and voltage at the receiving end of a short transmission line.
Symbol: Φr
Measurement: AngleUnit: °
Note: Value can be positive or negative.
Transmission Efficiency
Transmission Efficiency in a short transmission line measures the ratio of power delivered to the load versus power sent from the source, typically high due to minimal losses.
Symbol: η
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.
Sending End Current
Sending End Current is defined as the amount of current injected into a short transmission line from the source or injectors.
Symbol: Is
Measurement: Electric CurrentUnit: A
Note: Value can be positive or negative.
Sending End Phase Angle
Sending End Phase Angle is the difference between the phasors of current and voltage at thee sending end of a short transmission line.
Symbol: Φs
Measurement: AngleUnit: °
Note: Value can be positive or negative.
Receiving End Current
Receiving End Current is defined as the magnitude and phase angle of current received at the load end of a short transmission line.
Symbol: Ir
Measurement: Electric CurrentUnit: A
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.
cos
Cosine of an angle is the ratio of the side adjacent to the angle to the hypotenuse of the triangle.
Syntax: cos(Angle)
acos
The inverse cosine function, is the inverse function of the cosine function. It is the function that takes a ratio as an input and returns the angle whose cosine is equal to that ratio.
Syntax: acos(Number)

Other Formulas to find Receiving End Phase Angle

​Go Receiving End Angle using Losses (STL)
Φr=acos((3VsIscos(Φs))-Ploss3VrIr)
​Go Receiving End Angle using Receiving End Power (STL)
Φr=acos(Pr3VrIr)

Other formulas in Power and Phase Difference category

​Go Transmitted Current (SC Line)
It=VtZ0
​Go Receiving End Power (STL)
Pr=3VrIrcos(Φr)

How to Evaluate Receiving End Angle using Transmission Efficiency (STL)?

Receiving End Angle using Transmission Efficiency (STL) evaluator uses Receiving End Phase Angle = acos(Transmission Efficiency*Sending End Voltage*Sending End Current*cos(Sending End Phase Angle)/(Receiving End Current*Receiving End Voltage)) to evaluate the Receiving End Phase Angle, The Receiving End Angle using Transmission Efficiency (STL) is the phase angle of the voltage at the load end relative to the source voltage. In short lines, this angle is typically small due to negligible reactive components, indicating minimal phase shift and efficient power transfer from the source to the load. Receiving End Phase Angle is denoted by Φr symbol.

How to evaluate Receiving End Angle using Transmission Efficiency (STL) using this online evaluator? To use this online evaluator for Receiving End Angle using Transmission Efficiency (STL), enter Transmission Efficiency (η), Sending End Voltage (Vs), Sending End Current (Is), Sending End Phase Angle s), Receiving End Current (Ir) & Receiving End Voltage (Vr) and hit the calculate button.

FAQs on Receiving End Angle using Transmission Efficiency (STL)

What is the formula to find Receiving End Angle using Transmission Efficiency (STL)?
The formula of Receiving End Angle using Transmission Efficiency (STL) is expressed as Receiving End Phase Angle = acos(Transmission Efficiency*Sending End Voltage*Sending End Current*cos(Sending End Phase Angle)/(Receiving End Current*Receiving End Voltage)). Here is an example- 3568.375 = acos(0.278*400*3.98*cos(0.5235987755982)/(3.9*380)).
How to calculate Receiving End Angle using Transmission Efficiency (STL)?
With Transmission Efficiency (η), Sending End Voltage (Vs), Sending End Current (Is), Sending End Phase Angle s), Receiving End Current (Ir) & Receiving End Voltage (Vr) we can find Receiving End Angle using Transmission Efficiency (STL) using the formula - Receiving End Phase Angle = acos(Transmission Efficiency*Sending End Voltage*Sending End Current*cos(Sending End Phase Angle)/(Receiving End Current*Receiving End Voltage)). This formula also uses Cosine (cos), Inverse Cosine (acos) function(s).
What are the other ways to Calculate Receiving End Phase Angle?
Here are the different ways to Calculate Receiving End Phase Angle-
  • Receiving End Phase Angle=acos(((3*Sending End Voltage*Sending End Current*cos(Sending End Phase Angle))-Power Loss)/(3*Receiving End Voltage*Receiving End Current))OpenImg
  • Receiving End Phase Angle=acos(Receiving End Power/(3*Receiving End Voltage*Receiving End Current))OpenImg
Can the Receiving End Angle using Transmission Efficiency (STL) be negative?
Yes, the Receiving End Angle using Transmission Efficiency (STL), measured in Angle can be negative.
Which unit is used to measure Receiving End Angle using Transmission Efficiency (STL)?
Receiving End Angle using Transmission Efficiency (STL) is usually measured using the Degree[°] for Angle. Radian[°], Minute[°], Second[°] are the few other units in which Receiving End Angle using Transmission Efficiency (STL) can be measured.
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