Gebaseer op die verskillende beskikbaarheidswaardes, word die werkverrigting van elke subsisteem ontleed en aangewend om instandhoudingsbesluite vir alle subsisteme te neem. Availability assessment of a two-unit stand-by pumping system, Reliability Engineering and System Safety, Vol. Reliability engineering.
Reliability engineering in systems design and operation. New York: Van Nostrand-Reinhold. An artificial neural network for modeling reliability, availability and maintainability of a repairable system, Reliability Engineering and System Safety, Vol. A focused approach to reliability, availability and maintainability for critical pressure vessels and piping, International Journal of Pressure Vessels and Piping, Vol. Reliability and availability analysis of repairable system using discrete event simulation. New methods to minimize the preventive maintenance cost of series-parallel systems using ant colony optimization, Reliability Engineering and System Safety, Vol.
An introduction to reliability and maintainability engineering. A text book on reliability engineering, 3 rd ed.. Affiliated East-West Press Ltd. Reliability analysis of various complex systems in thermal power station, M. Design reliability fundamentals and applications. Statistical theory of reliability and life testing probability models. System reliability evaluation and prediction in engineering. New York: Springer. Modeling the loss and recovery of electric power. Nuclear Eng Des Introduction to reliability engineering. New York: Wiley. Reliability characteristics of components and systems with tolerable repair times, Reliability Engineering System Safety, Vol.
Reliability-based design. Distribution systems, Load characteristics, Application of distribution transformers, design of primary feeders, Design of secondary feeders, Voltage drop and power loss, calculation, Capacitor application, Distribution system automation, HV transmission systems, Review the electrical parameters of HV lines, Conductor types, bundle conductor, Corona phenomena on AC and DC lines, Radio and TV interference, Audible noise, Electrical field effect of HV lines, Insulator selection and clearances, Lightning performance, Voltage regulation.
System operation and operating tools. System Dynamic Performance, the Swing Equation, Synchronizing power and natural frequencies of oscillations, equal area criterion; Analytical basis for identifying modes, Synchronous Machine control, The two reaction theory , Development of the complete d and q axes equations in per unit, Formulation of the states-pace equations, Equations of the one machine connected to infinite bus, Transient and sub-transient parameters, Synchronous machine simulation, Steady-state conditions and phasor diagrams, Simulation of Multi-machine Systems.
Due to ultimate energy supply constraints imposed by fossil fuel and ever increasing energy demand from consumers, renewable energy is attaining much more prominent position as a promisingly viable and necessary solution. This course covers the critical technical constituents that advance electrical utilization of renewable energy. The lecture topics are divided into two modules: electric power conversion and grid integration. Vittal, R. Ayyanar, Springer, Define research; research terms; research process and the principle activities, skills and ethics associated with the research process, relationship between theory and research, major quantitative and qualitative research methods, importance of research ethics and integrate research ethics into the research process, assess and critique a published journal article that uses one of the primary research methods in the field; construct an effective questionnaire that employs several types of survey questions.source site
Zohreh Ravaghi Ardebili
Los Angeles: Sage. Basic principles of switch-mode power conversion. Concept of steady state in switching converters, volt-second and ampere-second balance, ideal switches, concept of power pole DC-DC converters Analysis and detailed design of buck, boost, buck-boost, Cuk and SEPIC converters Analysis and detailed design of isolated dc-dc converters including forward, fly-back, push-pull, full bridge and dual active bridge topologies, continuous and discontinuous current modes of operation, linearized, small-signal average models of dc-dc converters, voltage mode and current mode control design methods, design of magnetics for dc-dc converters.
Mohan, T. Undeland, W. Robbins, Wiley, 3rd ed. There is a need to improve understanding of the various DG technologies, differences in operational and control characteristics, and interaction with power distribution systems. Outcomes: On successful completion of this study the student should be able to understand:. Health effects. Advanced topics of current interest in Electrical Energy System Engineering.
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Topics are selected from current technical literature. Type of faults in power system, open and short-circuit faults, causes, symmetrical components, sequence networks, Balance and Unbalance faults, Fault Analysis by Computer Methods, Faults analysis of different components of power system, Power system stability and faults. Detection of System variables, Relays, Fuses and Circuit Breakers, Isolators, Earthing switches, Protection of Power Transformer, Motor, Generator, transmission and distribution lines, Voltage and Current transformers, power system condition monitoring, Protection schemes and zoning, Microprocessor based power system protection.
Power interchange in HVDC links. Load flow and power flow.
Zohreh Ravaghi Ardebili » SuPER Team
HV cables, Grid systems, Inter-connections. Effect of high electric and magnetic field of HV lines, Environmental issues.
Sources of overvoltages and transients, Overvoltages and Transient performance of Power System, Circuit Interruption, Switching and lightning transients, Travelling waves, Behavior of power system equipment under transient conditions, Protection against transient overvoltage, Arresters, Insulation coordination. Insulation parameters, ionization and Dissociation processes, Charge transport mechanism, Thermal processes, Insulation Failure theories, Discharges and Insulation defects, Polarization and dielectric relaxation, Behavior in high electric and magnetic fields, Classification of insulation in terms of their Dielectric Properties.
Special Purpose Insulation: Insulation for cables in nuclear environment and in Cryogenic Temperatures, Insulation for super-conducting magnet coils, Insulation for cables used in space crafts. Introduction, Power and Distribution transformers, Installation of transformers, Transformers theory and design, Operation of transformers in power system, Incipient faults in transformers, Transformer protection, Instrument transformers, High voltage testing transformers, Auto transformers, Transformers in HVDC systems, Voltage regulation and phase advancers.
Principles of motors and generators, Types of rotating machines, AC and DC machines, AC machine design, Electrical machines for hybrid vehicles, Application of electrical machines, Special purpose electrical machines, and Industrial applications. Conventional and non-conventional plants, Peak load and base load plants, Thermal power stations, thermodynamics of thermal plants, Nuclear power stations, Types of reactors, Radiation safety and nuclear waste disposal, Hydroelectric power stations, Hydrology and fluid dynamics, Site selection for different power stations, Layout of power station components and installation, Environmental issues, Control of power stations, Station switchyards, Generation mix, Optimum power dispatch.
Introduction, Smart metering and monitoring of power system equipment, Centralized control of load and generation, Load management and communication infrastructure model, NIST models, Smart grid control elements, Energy storage, Smart grid application layer, Sensors, Smart grid application related to deficient and surplus generation, Fault detection and reporting, Integration of new technologies into grid, Smart grid architecture, Economics and energy savings.
Load forecasting techniques, Consumers classification, Feeders and distributors, Urban and rural electrification, Micro-girds, Overhead and underground distribution systems, Distribution system components, Design and Analysis of distribution systems, Power factor improvement, Losses and voltage drop calculations in distributors, Demand side load management, Metering, Tariffs, Protection of distribution system, Operation of distribution system, Utilization of electrical energy, Traction, Illumination.
Fuchs and Mohammad A. Introduction, Transmission and distribution substations, Outdoor and Indoor substations, Switchyard, Substation equipment, Installation and arrangement, Busbar arrangement, Grounding and Shielding, Telemetry, Power line communication system, GIS substations, Interconnections and Islanding, Substation control, Micro-grids.
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Introduction to renewable energy sources, grid codes of Pakistan National Grid, Fault ride through criteria development, High penetration of wind and PV System in low voltage distribution systems and solution to voltage imbalance and improvement, Performance evaluation of grid connected PV Systems with different MPPT Controllers, Optimal siting and sizing of PV Systems and Wind Power Plants, Power Flow Analysis and Reactive power compensation of grid connected wind farms, Contribution of variable speed wind turbines for frequency regulation and oscillation damping, Integration of Clean energy into distribution networks, Integration of Plug in Hybrid Electric Vehicles PHEV into the distribution grid, Coordinating Distributed Generation sources during emergency operations, Energy storage in fly wheels, Pumped storage hydroelectric power plants, Super capacitors, compressed air storage for clean energy sources.
Buchla , Thomas E. Kissell , Thomas L. This course covers the computer modeling of synchronous machines, transformers, transmission lines, loads, electromagnetic transients, load flow and system stability study under power electronic control.
Hamefors, M. Hinkkanen, och J. Communication and control of power systems is a large and comprehensive topic including many different fields ranging from power system instrumentation to power system modeling and control systems theory. This course provides a wide perspective on the field, opening for continued studies in specialized subjects, its focus is on design, implementation and use of information and control systems for protection, automation and operation of restructured power systems.
The course is inter-disciplinary, covering electrical power engineering as well as computer and communication system engineering.
Nuclear, Thermal Power Engineering, Renewable Energy and Related Technologies
Describe the functions of the primary equipment in the power system that is relevant for protection, automation and control. Analyze substations and simple power systems in terms of reliability protection, automation and control needs. Describe the function and architecture of information and control systems used for protection, automation and control of power systems.
Analyze and develop basic systems for substation automation and protection.