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Lecture - 33 Optimal Unit Commitment
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Power System Generation, Transmission and Distribution
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- 1 Lectures - 1 Electric Energy Systems
- 2 Lecture - 2 Structure of Power Systems
- 3 Lecture - 3 Conventional Sources of Electric Energy
- 4 Lecture - 4 Hydroelectric Power Generation
- 5 Lecture - 5 Non Conventional Energy Sources
- 6 Lecture - 6 Renewable Energy (Contd.)
- 7 Lecture - 7 Energy Storage
- 8 Lecture - 8 Deregulation
- 9 Lecture - 9 Air Pollutants
- 10 Lecture - 10 Transmission Line Parameters
- 11 Lecture - 11 Capacitance of Transmission Lines
- 12 Lecture -12 Characteristics and Performance of Transmission
- 13 Lecture - 13 Voltage Regulation
- 14 Lecture - 14 Power Flow through a line
- 15 Lecture - 15 Methods of Voltage Control
- 16 Lecture - 16 Compensation of Transmission Lines
- 17 Lecture - 17 Compensation of Transmission Lines (Contd.)
- 18 Lecture - 18 Underground Cables
- 19 Lecture - 19 Cables (Contd.)
- 20 Lecture - 20 Insulators for Overhead Lines
- 21 Lecture - 21 HVDC
- 22 Lecture - 22 HVDC (Contd.)
- 23 Lecture - 23 Distrubution Systems
- 24 Lecture - 24 Automatic Generation Control
- 25 Lecture - 25 Automatic Generation Control Continued
- 26 Lecture - 26 Load Flow Studies
- 27 Lecture - 27 Load Flow Problem
- 28 Lecture - 28 Load Flow Analysis (contd.)
- 29 Lecture - 29 Newton Raphson (NR),
- 30 Lecture - 30 Fast Decoupled Load Flow
- 31 Lecture - 31 Control of Voltage Profile
- 32 Lecture - 32 Optimal System Operation
- 33 Lecture - 33 Optimal Unit Commitment
- 34 Lecture - 34 Optimal Generation Scheduling
- 35 Lecture - 35 Optimal Load Flow (Contd.)