Branch : Electrical and Electronics Engineering | Subject : Advanced Topics in Power Systems
Power Electronic equipments in Power System
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Power semiconductor Devices in power system
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Diodes in Power system
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Thyristor in Power system
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Light-triggered thyristor (LTT) in Power system
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Desired characteristics of fully-controlled power semiconductors in power system
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Gate-turn-off thyristor in power system
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Metal-oxide-semiconductor field effect transistor in power system
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Insulated-gate bipolar transistor in power system
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MOS-controlled thyristor in power system
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Semiconductor switching-power performance in Power system
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characteristics of semiconductors used in power system
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Cooling systems of semiconductor in power system
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Protection of semiconductors - snubber circuits
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Current trends in power semiconductor technology
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Thyristor-controlled reactor (TCR)
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Fundamental voltage/current characteristic of TCR
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Harmonics of TCR
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The thyristor-controlled transformer (TCT)
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The TCR with shunt capacitors
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Introduction to thyristor-switched capacitor (TSC)
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Ideal transient-free switching
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General Switching transients
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Switching a discharged capacitor
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Voltage-source converters (VSCs) and derived controllers
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Single-phase half-bridge VSC
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Single-phase full-bridge VSC
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Conventional three-phase six-step VSC
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Single-phase half-bridge neutral-point-clamped (NPC) VSC
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Single-phase full-bridge NPC VSC
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Other multilevel converter topologies
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Pulse-width modulated (PWM) VSCs
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Uninterruptible Power Supplies (UPSs)
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Introduction to HVDC transmission
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HVDC schemes and control
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Advanced concepts in conventional HVDC applications
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A Look on High Voltage Direct Current
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HVDC System Configurations
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Components of HVDC Transmission System
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Valve Characteristics of HVDC systems
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Converter Circuits of HVDC system
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Analysis of three-phase, full-wave bridge circuit of HVDC system
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Analysis of three-phase, full-wave bridge circuit assuming negligible source inductance(NO IGNITION DELAY)
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Average direct voltage with negligible source inductance under no ignition delay
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Analysis of three-phase, full-wave bridge circuit assuming negligible source inductance (With IGNITION DELAY)
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Current and phase relations with ignition delay
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Analysis Of 3-Phase, Full-Wave Bridge Circuit Including Commutation Overlap
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Voltage Reduction Due to Commutation Overlap
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Rectifier operation of the three phase full wave bridge circuit
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Inverter operation of the three phase full wave bridge circuit
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Relationship between ac and dc quantities of three phase full wave bridge circuit
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Converter Transformer Rating
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Basic Principles of Control OF HVDC SYSTEMS
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Basis for selection of controls of HVDC system
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Control characteristics of HVDC system - Ideal characteristics
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Control characteristics of HVDC system - Actual characteristics
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