2022•Unpublished venueRequires access

Load Flow Analysis Using MATLAB

Swarupa Mishra, Yadwinder Singh Brar

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Abstract

In Newton Raphson load flow analysis, scheduled active power, scheduled reactive power for each generating unit, Active power injections (from bus), Reactive power injections (from bus), Active power injections (to bus), Reactive power injections (to bus), Active power loss and Reactive power loss in each branch for IEEE 14 Bus System and IEEE 30 bus system are calculated. Graphs are plotted for active power loss and reactive power loss for both IEEE 14 Bus System and IEEE 30 bus system.

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What this paper is about

In Newton Raphson load flow analysis, scheduled active power, scheduled reactive power for each generating unit, Active power injections (from bus), Reactive power injections (from bus), Active power injections (to bus), Reactive power injections (to bus), Active power loss and Reactive power loss in each branch for IEEE 14 Bus System and IEEE 30 bus system are calculated. Graphs are plotted for active power loss and reactive power loss for both IEEE 14 Bus System and IEEE 30 bus system.

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Available abstract

In Newton Raphson load flow analysis, scheduled active power, scheduled reactive power for each generating unit, Active power injections (from bus), Reactive power injections (from bus), Active power injections (to bus), Reactive power injections (to bus), Active power loss and Reactive power loss in each branch for IEEE 14 Bus System and IEEE 30 bus system are calculated. Graphs are plotted for active power loss and reactive power loss for both IEEE 14 Bus System and IEEE 30 bus system.

Key concepts: AC power, Slack bus, Power-flow study, MATLAB, Electric power system, Power factor, Computer science, Power (physics)

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