Line Losses in End Condenser Method Solution

STEP 0: Pre-Calculation Summary
Formula Used
Power Loss in ECM = 3*Resistance in ECM*Sending End Current in ECM^2
Ploss(ecm) = 3*Recm*Is(ecm)^2
This formula uses 3 Variables
Variables Used
Power Loss in ECM - (Measured in Watt) - Power Loss in ECM is defined as the deviation in the power transferred from sending end to receiving end of a medium transmission line.
Resistance in ECM - (Measured in Ohm) - Resistance in ECM is a measure of the opposition to current flow in a medium length transmission line.
Sending End Current in ECM - (Measured in Ampere) - Sending End Current in ECM is defined as the amount of current injected into a medium transmission line from the source or injectors.
STEP 1: Convert Input(s) to Base Unit
Resistance in ECM: 0.11 Ohm --> 0.11 Ohm No Conversion Required
Sending End Current in ECM: 16 Ampere --> 16 Ampere No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Ploss(ecm) = 3*Recm*Is(ecm)^2 --> 3*0.11*16^2
Evaluating ... ...
Ploss(ecm) = 84.48
STEP 3: Convert Result to Output's Unit
84.48 Watt --> No Conversion Required
FINAL ANSWER
84.48 Watt <-- Power Loss in ECM
(Calculation completed in 00.004 seconds)

Credits

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Created by Urvi Rathod
Vishwakarma Government Engineering College (VGEC), Ahmedabad
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Verified by Shobhit Dimri
Bipin Tripathi Kumaon Institute of Technology (BTKIT), Dwarahat
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17 End Condenser Method in Medium Line Calculators

Receiving End Angle using Sending End Power in End Condenser Method
​ Go Receiving End Phase Angle in ECM = acos((Sending End Power in ECM-Power Loss in ECM)/(3*Receiving End Current in ECM*Receiving End Voltage in ECM))
Voltage Regulation in End Condenser Method
​ Go Voltage Regulation in ECM = (Sending End Voltage in ECM-Receiving End Voltage in ECM)/Receiving End Voltage in ECM
Sending End Current using Impedance in End Condenser Method
​ Go Sending End Current in ECM = (Sending End Voltage in ECM-Receiving End Voltage in ECM)/Impedance in ECM
Receiving End Voltage in End Condenser Method
​ Go Receiving End Voltage in ECM = Sending End Voltage in ECM-(Sending End Current in ECM*Impedance in ECM)
Sending End Voltage in End Condenser Method
​ Go Sending End Voltage in ECM = Receiving End Voltage in ECM+(Sending End Current in ECM*Impedance in ECM)
Impedance(ECM)
​ Go Impedance in ECM = (Sending End Voltage in ECM-Receiving End Voltage in ECM)/Sending End Current in ECM
Sending End Current using Losses in End Condenser Method
​ Go Sending End Current in ECM = sqrt(Power Loss in ECM/(3*Resistance in ECM))
Transmission Efficiency in End Condenser Method
​ Go Transmission Efficiency in ECM = (Receiving End Power in ECM/Sending End Power in ECM)*100
Receiving End Current in End Condenser Method
​ Go Receiving End Current in ECM = Sending End Current in ECM-Capacitive Current in ECM
Sending End Current in End Condenser Method
​ Go Sending End Current in ECM = Receiving End Current in ECM+Capacitive Current in ECM
Capacitive Current in End Condenser Method
​ Go Capacitive Current in ECM = Sending End Current in ECM-Receiving End Current in ECM
Sending End Power in End Condenser Method
​ Go Sending End Power in ECM = Receiving End Power in ECM-Power Loss in ECM
Resistance using Losses in End Condenser Method
​ Go Resistance in ECM = Power Loss in ECM/(3*Sending End Current in ECM^2)
Line Losses in End Condenser Method
​ Go Power Loss in ECM = 3*Resistance in ECM*Sending End Current in ECM^2
Admittance using A Parameter in End Condenser Method
​ Go Admittance in ECM = (2*(A Parameter in ECM-1))/Impedance in ECM
Impedance using A Parameter in End Condenser Method
​ Go Impedance in ECM = (2*(A Parameter in ECM-1))/Admittance in ECM
Medium Line A Parameter (LEC)
​ Go A Parameter in ECM = 1+((Impedance in ECM*Admittance in ECM)/2)

Line Losses in End Condenser Method Formula

Power Loss in ECM = 3*Resistance in ECM*Sending End Current in ECM^2
Ploss(ecm) = 3*Recm*Is(ecm)^2

What are the disadvantages of condenser end?

Although the end condenser method for the solution of medium lines is simple to work out calculations, yet it has the following drawbacks. There is a considerable error (about 10%) in calculations because the distributed capacitance has been assumed to be lumped or concentrated.

What is end condenser method?

In this method, the capacitance of the line is lumped or concentrated at the receiving or load end. This method of localizing the line capacitance at the load end overestimates the effects of capacitance.

How to Calculate Line Losses in End Condenser Method?

Line Losses in End Condenser Method calculator uses Power Loss in ECM = 3*Resistance in ECM*Sending End Current in ECM^2 to calculate the Power Loss in ECM, The Line Losses in End Condenser Method(ECM) formula is defined as the ratio of the power absorbed by the input circuit of a transducer to the power delivered to a specified load; usually expressed in decibels. Also known as power attenuation. Power Loss in ECM is denoted by Ploss(ecm) symbol.

How to calculate Line Losses in End Condenser Method using this online calculator? To use this online calculator for Line Losses in End Condenser Method, enter Resistance in ECM (Recm) & Sending End Current in ECM (Is(ecm)) and hit the calculate button. Here is how the Line Losses in End Condenser Method calculation can be explained with given input values -> 84.48 = 3*0.11*16^2.

FAQ

What is Line Losses in End Condenser Method?
The Line Losses in End Condenser Method(ECM) formula is defined as the ratio of the power absorbed by the input circuit of a transducer to the power delivered to a specified load; usually expressed in decibels. Also known as power attenuation and is represented as Ploss(ecm) = 3*Recm*Is(ecm)^2 or Power Loss in ECM = 3*Resistance in ECM*Sending End Current in ECM^2. Resistance in ECM is a measure of the opposition to current flow in a medium length transmission line & Sending End Current in ECM is defined as the amount of current injected into a medium transmission line from the source or injectors.
How to calculate Line Losses in End Condenser Method?
The Line Losses in End Condenser Method(ECM) formula is defined as the ratio of the power absorbed by the input circuit of a transducer to the power delivered to a specified load; usually expressed in decibels. Also known as power attenuation is calculated using Power Loss in ECM = 3*Resistance in ECM*Sending End Current in ECM^2. To calculate Line Losses in End Condenser Method, you need Resistance in ECM (Recm) & Sending End Current in ECM (Is(ecm)). With our tool, you need to enter the respective value for Resistance in ECM & Sending End Current in ECM and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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