Power Flow Analysis for Electrical Engineers
- Description
- Curriculum
- FAQ
- Reviews
Power or load flow studies are probably the most common of all power system analysis calculations. They are used in planning studies to determine if and when specific elements will become overloaded. Major investment decisions begin with reinforcement strategies based on load-flow analysis. In operating studies, load-flow analysis is used to ensure that each generator runs at the optimum operating point; demand will be met without overloading facilities; and maintenance plans can proceed without undermining the security of the system.
The objective of any load-flow program is to produce the following information:
ā¢ Voltage magnitude and phase angle at each bus.
ā¢ Real and reactive power flowing in each element.
ā¢ Reactive power loading on each generator.
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3Complex Power - Part (A)
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4Complex Power - Part (B)
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5Complex Power Balance
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6Example (1) - Part (1) using MATLAB SIMULINK
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7Example (1) - Part (2) using MATLAB SIMULINK
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8Example (1) - Part (3) using MATLAB SIMULINK
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9Example (2) - Part (1) using MATLAB SIMULINK
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10Example (2) - Part (2) using MATLAB SIMULINK
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11Complex Power Flow
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12Complex Power Flow using MATLAB SIMULINK
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13Basics of Three Phase System
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14Basics of Three Phase Power
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15Example of Three Phase Power using MATLAB SIMULINK
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21Y-Bus Matrix Building Rules - Part (1)
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22Y-Bus Matrix Building Rules - Part (2)
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23Formation of Y-Bus Matrix using MATLAB - Part (1)
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24Formation of Y-Bus Matrix using MATLAB - Part (2)
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25Formation of Y-Bus Matrix using MATLAB - Part (3)
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26Example (1) of Y-Bus Matrix using MATLAB
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27Example (2) of Y-Bus Matrix using MATLAB
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42Create A New Case and Open An Exsisting Case
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43Adding Grid Lines
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44Adding and Editing A New Bus-Bar
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45Adding and Editing A New Generator
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46Adding and Editing A New Load
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47Adding and Editing A New Transmission Line
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48Adding and Editing A New Shunt Capacitor
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49Adding and Editing A New Transformer
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50Model (1)
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51Opening A Line and Disconnecting A Load
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