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Methodology for Segregation of Active and Reactive Power Flows Losses through Load Flow Study
by
Kanwar, Neeraj
, Khandle, Harshita
in
Buses
/ Capacitor banks
/ Case Study
/ Communications Engineering
/ Electric potential
/ Electric power systems
/ Electrical loads
/ Engineering
/ Methodology
/ Networks
/ Power factor
/ Power flow
/ Reactive power
/ Shunt capacitors
/ Substations
/ Tap changers
/ Transformers
/ Transmission lines
/ Transmission loss
/ Voltage
2023
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Methodology for Segregation of Active and Reactive Power Flows Losses through Load Flow Study
by
Kanwar, Neeraj
, Khandle, Harshita
in
Buses
/ Capacitor banks
/ Case Study
/ Communications Engineering
/ Electric potential
/ Electric power systems
/ Electrical loads
/ Engineering
/ Methodology
/ Networks
/ Power factor
/ Power flow
/ Reactive power
/ Shunt capacitors
/ Substations
/ Tap changers
/ Transformers
/ Transmission lines
/ Transmission loss
/ Voltage
2023
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Methodology for Segregation of Active and Reactive Power Flows Losses through Load Flow Study
by
Kanwar, Neeraj
, Khandle, Harshita
in
Buses
/ Capacitor banks
/ Case Study
/ Communications Engineering
/ Electric potential
/ Electric power systems
/ Electrical loads
/ Engineering
/ Methodology
/ Networks
/ Power factor
/ Power flow
/ Reactive power
/ Shunt capacitors
/ Substations
/ Tap changers
/ Transformers
/ Transmission lines
/ Transmission loss
/ Voltage
2023
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Methodology for Segregation of Active and Reactive Power Flows Losses through Load Flow Study
Journal Article
Methodology for Segregation of Active and Reactive Power Flows Losses through Load Flow Study
2023
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Overview
This work presents a methodology for segregation of transmission losses of active and reactive power flows based on load flow study with unity vs actual power factor of load buses. The proposed methodology applied on existing 12 bus Indian power system having five transmission lines, 12 power transformers, five load buses, 13 shunt capacitor banks. Hourly actual system parameters of test system, viz. active and reactive power demand, tap position of transformers, ON/OFF status of shunt capacitor banks and swing bus voltage gathered from the grid substations and simulation studies performed on MiPower software for separation of losses. In second part, bus reactive demand is mitigated through automatic switched shunt capacitor banks and its effect on system voltage profile, loading of transmission system elements, number of operations of on load tap changer and losses are presented.
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