Showing posts with label Power System. Show all posts
Showing posts with label Power System. Show all posts

Tuesday, September 26, 2023

Power Systems : (power system analysis and simulation, per-unit system, symmetrical components for power system analysis, power flow analysis, fault analysis in power systems, power system transients, characteristics of lightning strokes, switching surges, very fast transients, transmission system transients, transient recovery voltage, surge arresters, insulation coordination, power system planning reliability, short-term load and price forecasting with artificial neural networks, transmission plan evaluation, power system planning, power system reliability, probabilistic methods for planning and operational analysis) .
Power System Analysis and Design : (computers in power system engineering, fundamentals, complex power, network equation, balanced three-phase circuits, power in balanced three-phase circuits, power transformers, the ideal transformer, equivalent circuits for practical transformers, the per-unit system, three-phases transformer connections and phase shift, three-winding transformers, autotransformers, transformers with off-nominal turns ratios, transmission line parameters, transmission lines steady-state operation, power flows, symmetrical faults, symmetrical components, unsymmetrical faults, system protection, transient stability, power system controls, transmission lines transient operation, power distribution) .
Power System Harmonics and Passive Filter Designs : (nonlinear loads, harmonic factor, single phase circuits sinusoidal, half wave symmetry, power spectrum of a function, time convolution, frequency convolution, leakage, fast fourier transform, harmonics in transformers, energization of transformer, delta windings of three phase transformer, harmonics in rotating machine windings, synchronous generators, power capacitors, harmonic generation, phase control, switch mode power supplies, voltage source converters, wind power generation, adjustable speed drives, inter harmonics and flicker ) .
Power System Analysis (2) : (electrical power system, fault and analysis, the primitive network, power system stability, tree and co-tree, incidence matrices, building of network matrices, power flow studies, short circuit analysis, unbalanced fault analysis, power system stability, system model for load flow studies, the rectangular coordinates method, polar coordinates method, per unit quantities, short circuit KVA, analysis of R-L circuit, power in sequence components, line to line fault with fault impedance, double line to ground fault, transient stability ) .
Power System Analysis (1) : (transmission line parameters, simulation of power system components, power flow studies, power system controls symmetrical fault analyses, formulation of network matrices, power system stability, voltage stability, contingency analysis techniques, state estimation techniques, an introduction to HVDC power transmission) .
Power Quality in Power Systems and Electrical Machines : (introduction to power quality harmonic models of transformers, modeling and analysis of induction machines, modeling and analysis of synchronous machines, interaction of harmonics with capacitors, lifetime reduction of transformers and induction machines, power system modeling under no sinusoidal operation conditions, impact of poor power quality on reliability relaying and security, the roles of filters in power systems and unified power quality conditioners, power quality solutions for renewable energy systems) .
Power Distribution System Reliability Practical methods and Applications : (fundamentals of probability and statistics, reliability principles, applications of simple reliability models, engineering economics, reliability analysis of complex network configurations, designing reliability into industrial and commercial power systems, important factors related to distribution standards, customer interruption cost models for load point reliability assessment, isolation and restoration procedures) .
Electrical Power Systems : (structure of power systems and few other aspects, resistance and inductance of transmission lines, capacitance of transmission lines, synchronous machine steady state and transient operations, power system components and per unit system, characteristics and performance of transmission lines, load flow analysis, symmetrical fault, symmetrical components, unbalanced fault analysis, power system stability, automatic generation control conventional scenario, automatic generation control in a restructured power system, analysis of sag and tension, optimal system operation) .
Electric Power Generation Transmission and Distribution : (concept of energy transmission and distribution, insulated power cables used in underground applications, transmission line parameters, sag and tension of conductor, lightning protection, distribution system modeling and analysis, power system operation and control, real time control of distributed generation, metering of electric power and energy, harmonics in power systems, voltage sags, voltage fluctuations and lamp flicker in power systems) .
Electric Power Generation, Transmission and Distribution : (electric power generation nonconventional methods, wind power, advanced energy technologies, electric power generation conventional methods, hydroelectric power generation, synchronous machinery, transmission system, transmission line structures, insulators and accessories, insulated power cables used in underground applications, transmission line parameters, sag and tension of conductor, corona and noise, geomagnetic disturbances and impacts upon power system operation, lightning protection, reactive power compensation transmission line reliability methods, high voltage direct current transmission system, power system loads, distribution system modeling and analysis, real time control of distributed generation, distribution short circuit protection, metering of electric power and energy, linear electric motors, wiring and grounding for power quality, harmonics in power systems, voltage sags) .
Electric Power Distribution System Engineering : (load characteristics, the relationship between the load and loss factors, electric meter type, instantaneous load measurements using watt-hour meters, application of distribution transformers, transformer polarity, equivalent circuits of a transformer, distribution transformer loading guides, single phase transformer connections, three phase connections, three phase transformers, design of sub transmission lines and distribution substations, design considerations of primary/secondary systems, voltage drop and power loss calculations, application of capacitors to distribution systems, distribution system voltage regulation, distribution system protection, fault current calculations, high impedance faults, lightning protection, distribution system reliability, electric power quality, measurements of electric power quality, sources of harmonics, short-circuit capacity or MVA, harmonic filter design, load modeling in the presence of harmonics) .

Thursday, September 14, 2023

Electric Power Distribution Engineering : (distribution system planning, present distribution system planning techniques, future nature of distribution planning, distribution system automation, relationship between the load and loss factors, maximum diversified demand, electric meter types, application of distribution transformers, tree phase connections, rating of a distribution substation, substation grounding, ground resistance, reduction of factor, ground conductor sizing factors, type of ground faults, transformer classifications, design consideration of primary system, design consideration of secondary system, voltage drop and power loss calculations, application of capacitors to distribution systems, distribution system voltage regulation, distribution system protection, distribution system reliability, electric power quality, distributed generation and renewable energy, energy storage system for electric power utility system, concept of smart grid and its applications) .
Communication and Control in Electric Power System : (applications of parallel and distributed processing, complexity of power grid, communications system, power system control, distributed implementation, state monitoring based on GPS, central control center, area control center, SCADA/EMS, distributed energy management Systems, advantages of distributed processing, foundation for distributed processing, parallel and distributed processing of power system, design of parallel and distributed computation performance, distributed processing of vertically integrated power, distributed processing of restructured power system, distributed energy trading system, parallel and distributed load flow computation, parallel and distributed load flow of distribution, distributed power system security analysis, distributed dynamic security analysis) .