Electrical Power Engineering Technology(EPE)
- 2025
- 2022
- 2019
- 2018
- 2016
- 2011
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| Course No رقم المساق | Course Name اسم المساق | Credit hours الساعات المعتمدة | Course Description وصف المساق |
|---|---|---|---|
| 8239 | Skills for Life | 2 | he transition from high school to university can be a challenge for many students. Learning expectations are different. The student must play a more effective role in the learning process and assume greater responsibility, and he must adapt to the new learning culture very quickly. This course is designed to assist the student in the transition process more easily and to increase and develop important life skills related to the student's personal behaviors, so that he is better prepared for his academic and professional career. This course focuses on self-awareness, personal growth, and building positive relationships with others. Through these skills, along with the desire and dedication to learn, and the desire to help others, a student can be successful at the university, able to make significant contributions to his family, employers, societies and the world at large |
| 8988 | Computer Principles | 3 | |
| 8992 | Computer Skills LAB | 1 | This lab will focus on making the students familiar with MS Office (including MS Word, MS Excel, and MS PowerPoint), and Flowchart |
| 8996 | English A2 | 0 | This course is designed to help minor university students with the beginner A1 and A2 levels improve their English Language proficiency in the four skills (reading, writing, listening and speaking) to reach the pre-intermediate level (B1) as benchmarked by the Common European Framework of Reference (CEFR). It places the students and their needs at the center of the learning process by ensuring that they encounter the most relevant and useful language at the right point in their learning. The English A2 course is rich in practical activities as it provides students with a wide variety of listening, speaking, and writing tasks that motivate them, address their language needs, develop their skills, and help them to become confident users of the English language. It also integrates students with using technology to serve their educational purposes, by means of Google Classroom and Cambridge One Learning Management System to watch purposeful educational videos and carry out online tasks and homework to increase their exposure to the language. |
| 8997 | English B1 | 3 | This course is a continuation to course English A2. It is designed to help minor university students with the beginner A2 level improve their English Language proficiency in the four skills (reading, writing, listening and speaking) to reach the pre-intermediate level (B1) as benchmarked by the Common European Framework of Reference (CEFR). It places the students and their needs at the center of the learning process by ensuring that they encounter the most relevant and useful language at the right point in their learning. The English B1 course is rich in practical activities as it provides students with a wide variety of listening, speaking, and writing tasks that motivate them, address their language needs, develop their skills, and help them become confident users of the English language. It also integrates students with using technology to serve their educational purposes, by means of Google classroom and Cambridge One Learning Management System to watch purposeful educational videos and carry out online tasks and homework to increase their exposure to the language. |
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| Course No رقم المساق | Course Name اسم المساق | Credit hours الساعات المعتمدة | Course Description وصف المساق |
|---|---|---|---|
| 4001 | Arabic Language | 3 | This course covers a various number of linguistic issues in Arabic language. It aims to provide the student with a high level of skills and practices that would contribute to promote his language abilities either spoken or written. |
| 4002 | Islamic Culture | 3 | This course is designed to emphasize a group of principles and thoughts that affect human attitudes to life from an Islamic point of view. It stresses the direct relationship between man and Allah, and aims at improving this life by liberating the human |
| 4320 | Modern History of Palestine | 3 | This course is designed to acquaint students with the process of writing, and the mechanisms of proofreading and revision so that the focus is on the mechanics of writing and development, such as cause and effect and comparison and classification and deal. |
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| Course No رقم المساق | Course Name اسم المساق | Credit hours الساعات المعتمدة | Course Description وصف المساق |
|---|---|---|---|
| 4004 | Calculus 1 | 3 | Functions, Limits and Continuity, Definition of Derivative, Differentiation Rules, Applications of the Derivative, Definite and Indefinite Integrals, Fundamental Theorem of Calculus, Applications of Definite Integral. |
| 4005 | Calculus 2 | 3 | The Calculus of Transcendental Functions, Techniques of Integrations, Sequences, Infinite Series, Power Series, Conic Sections, Polar Coordinates. |
| 4006 | Physics 1 | 3 | Physical quantities, Units, Vectors and Scalars, Motion in one dimension, Motion in two dimensions, Newton’s laws of motion and dynamics, Work and Energy, Conservation of Energy, Conservation of linear momentum and collision, Center of mass and moment of |
| 4008 | Chemistry 1 | 3 | Matter, its Properties and Measurement, Development of the Atomic Theory, Stoichiometry; Elements and Compounds, Chemical Reactions, Gases, Thermo chemistry, Electrons in Atoms, Atomic Properties and Periodic Table |
| 4009 | Chemistry Lab1 | 1 | This is a freshman practical chemistry course, where the students learn basic instrumental techniques including weighing, pipetting, titration and use of different laboratory glassware. In addition, students will be able to perform laboratory calculations associated with the experiments. Experiments include Boiling point elevation, Density determination, Melting point, Stoichiometry of two reactions, Water of Hydration, Molecular weight of a volatile liquid, Identification of solutions. |
| 4015 | Methods of Scientific Research | 2 | Science and its objectives, scientific thinking, concepts and fields of scientific research, human knowledge, the library and its role in research and knowledge, methods of scientific research (historical method, descriptive method, procedural method, experimental method), research problem, research plan, research hypotheses, samples |
| 4068 | Physics 2 | 3 | This course discusses the fundamental concepts of Electricity and Magnetism. It begins by clarifying the principles of electrostatics and the electric field, followed by an explanation of Gauss’s Law and its various applications. The course then explores the concept of electric potential, the properties of capacitors, and the behavior of dielectric materials |
| 5059 | Computer Programming | 3 | Introduction to programming and, problem solving, data types in C Language, Input /Output, variables, expressions, control and selection statements, functions, arrays, pointers, structure and files. |
| 5060 | Engineering Drawing | 2 | The course begins by developing students’ freehand drawing skills, enabling them to accurately represent geometric shapes without drawing instruments. This practice enhances visual perception and understanding of dimensions and projections. Following this, the course provides fundamental training in engineering drawing, covering basic principles and 2D drafting concepts. Topics include an introduction to engineering drawing and its tools, practice in writing Arabic and English letters and numbers in technical drawings, and familiarization with types of lines and dimensions. The course also includes geometric operations and their applications, understanding various types of projections, and applying projection techniques—particularly the scientific derivation of the third view. Additional topics include sectional views and drawing isolated engineering objects. |
| 5061 | Engineering Workshop | 2 | |
| 8130 | Eng. Economics & | 2 | Introduction to management, importance of management, characteristics of management. Management process. Management of Human Resources. Strategic Planning, SWOT Analysis & balanced Scorecard. Project management, networks, critical path. Inventory system |
| 30092 | English for Engineers | 3 | |
| 30093 | Engineering Ethics | 1 | |
| 30104 | General Physics Lab. | 1 | Mechanics, thermodynamics and Motion. Experiments in the electricity and magnetism, which aims to give the students, the basic concepts in the previous topics given in general physics 1 and 2 courses. |
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| Course No رقم المساق | Course Name اسم المساق | Credit hours الساعات المعتمدة | Course Description وصف المساق |
|---|---|---|---|
| 4043 | Differential Equations 1 | 3 | First order differential equation. The existence and uniqueness theorem differential equation of Higher order, Lap face transform. Using lab face transform in solving differential equation. Power series solution of differential equation. |
| 4101 | Electrical Cirtcuits II | 3 | Review of sinusoidal steady state; Polyphase circuits: Single-phase three-wire systems, three-phase Y-Y, Delta and Y-Delta connections; Concept of transfer functions, resonance and introduction to filters; Complex frequency and Laplace transform: Calculating natural, forced, and complete response using s-plane. Introduction to active and passive filter design. Two-Port networks |
| 4102 | Electrical Circuits Lab | 1 | |
| 4103 | Electronics I | 3 | |
| 4106 | Electrical Circuits I | 3 | Physical foundations of electric circuits: Charge, Energy, power, and efficiency; Basic circuit elements: Resistance, Capacitance, and Inductance, Independent and dependent voltage and current sources; Basic-dc laws of circuit theory: Ohm's law, source transformation, Kirchoff's laws and methods of circuit analysis including nodal and mesh; Circuit theorems: superposition principles, Thevenin and Norton theorems; Circuits with Operational Amplifiers, Inductance and capacitance, Transient analysis of first order RC and RL circuits; Sinusoidal sources and the concept of phasor in ac-circuit analysis. . Introduction to the concept of average, reactive, and complex power, power factor, maximum power transfer theorem. |
| 4206 | Power Electronics | 3 | Power diode classifications, reverse recovery performances, series and parallel connection, and snubber protection circuits. Single and three-phase uncontrolled rectifiers with various loading characters. Thyristor firing and commutation circuits. Single & three-phase controlled rectifiers with various loading characters and four quadrant operations. Single and three-phase AC voltage controller. DC chopping circuits, step-down and step-up chopper. DC to AC converter single and three-phase circuits, modulation strategies and inverters applications in power and industrial applications. Application of software packages in Power Electronics ( Matlab/simulink, PSIM, Multisim, LabVIEW, PLECS,..). |
| 4207 | Power Electronics Lab. | 1 | Transistor performance as switch, Thyristors, Diac and Triac, phase control with Diac and Triac, natural and commutation techniques, Single and three-phase uncontrolled and controlled rectifiers, DC choppers. Single-phase AC voltage controller’s ON-OFF and phase control, three phase controller. Inverter circuits. |
| 4356 | Electrical Machines Lab. | 1 | |
| 4450 | Probability and Statistics for Engineers | 3 | |
| 4458 | Control Systems | 3 | This course consists of three parts; Part A: Introduction, transfer function, poles, zeros. Block diagram reduction including disturbance inputs. State variables: State space from differential equations, state space from transfer function, transfer function from state space, time response from state space. Performance parameters of closed loop system: time response, damping ratio, natural frequency, percentage overshoot, settling time, rise time, peak time, steady state error. Stability tests of linear system: eigenvalues tests, Routh table. Root locus techniques. Part B: Continuous time classical controllers design: P, PD, PI, lead, lag, and lag-lead via root locus method. Part C: Sampled data, difference equations, z-transform review, Nyquist frequency (sampling theorem), digital controller design using discrete equivalent; hands-on experience covers basic applications in control systems laboratory. |
| 5087 | Linear Algebra & Numerical Methods | 3 | Systems of linear equations and matrices: Gaussian elimination, Gauss-Jordan elimination, Elementary row operations and homogeneous systems, Matrices: Operation on matrices, Inverse of a matrix, Equivalency of matrices, Symmetric matrix, Determinants, Vector spaces: Subspaces, Linear independence, Basis and representation, Dimension of vector spaces, The row space and the column space of matrix, Direct sum, Linear transformation: Linear operator, zero transformation and matrix transformation, Kernal and range of a transformation, Representing linear transformation by matrices, Eigenvalues, Eigenvectors, Diagonalization, Quadratic form, Orthonormal matrices, Applications to mechanical and electrical systems, Number representation and Errors, Locating Roots of Equations, Interpolation and, Numerical differentiation, Numerical Integration, Systems of Linear Equations, Approximation by Spline Functions, Ordinary differential equations, Smoothing of Data and the method of least squares. |
| 5109 | Applied Mechanics | 3 | Equilibrium of rigid bodies (Force analysis, moments and couples), Mechanical and thermal stresses and strains (Stress-strain diagram and analysis), Modules of electricity and modulus of rigidity, Analysis of beams (Force and moment loading). Kinematics of particles and kinematics of rigid bodies, Kinetics of particles and kinetics of rigid bodies (Forces, mass, acceleration method, energy method. |
| 5587 | Digital systems | 3 | Digital Design Introduction to Boolean Algebra, Theorems and Laws of Boolean Algebra, Logic Gates, introduction to digital electronics, Simplification of Boolean Functions, Karnaugh Maps, Combinational Logic Circuits (Adders, Subtractors, Code Conversion, ..etc). Medium Scale Integration Logic Circuits (Comparators, Encoders, Decoders, MUX, DeMUX, ..etc). Synchronous Logic Circuits, Flip Flops, Counters and Registers. |
| 5588 | Digital Systems Lab. | 1 | The main goal of the Digital Systems Lab is to familiarizes students to digital electronics, starting with basic gates and progressing to advanced sequential circuits like counters and flip-flops and their uses. Students can apply and create numerous digital circuits in their many forms in the lab. One of the lab's objective is to introduce the student to Filed Programmable Gate Arrays, and be able to program, and use them to implement design schemes. The student gains the ability to connect digital circuit inputs in all of their forms, including digital and analog inputs, to the digital circuit. They also gain the ability to connect digital circuit outputs to digital outputs in all of their forms, including parallel and sequential outputs. |
| 5589 | Electrical Machines (I) | 3 | Introduction to Electrical machines: Machines classification & construction. Mechanical torque & power, magnetic field, poles, and developed torque. Efficiency, losses, power diagram, and regulations. Transformers: Construction of transformers, principle of operation, and main voltage equations. Equivalent circuits single phase transformers, and voltage regulation, Autotransformer, 3-phase transformer. Direct Current Machines Electric: Construction of DC machines (motors & generators). Circuit model & torque development, field excitation & armature reaction. Mechanical performance of dc motors. Speed regulation of dc motors, energy diagram & efficiency. Starting & braking of dc motors. Voltage regulation of dc generators Single- Phase Induction machines and special motors: Construction of single- phase machines, classification, and principle of operation. Mechanical performance of single phase induction motors. Capacitor motors, Shaded pole motors, Universal motors, and Special jobs motors. |
| 5618 | Electrical Installations & lighting | 3 | electrical design requirements such as architectural, mechanical, and electrical requirements, calculation of quantities, and drawings of electrical extensions to buildings from the source of electrical current to the sites of their use in all parts of the building. installation methods for various electrical wiring methods and safely perform their tasks according to Code rules. raceways and wireways, cabling methods, service entrance installations. The necessary symbols, diagrams, technical specifications, instructions, local conditions, design calculations for lighting circuits and extensions, specifications of the materials used such as wires, sockets, switches, protection against earth leakage, short circuits and overload. Design of grounding systems for buildings, industrial and commercial facilities. Familiarizing students with the requirements of correct artificial lighting through the definition of the nature of light and its theories, the definition of light quantities, their units, their measurement, use, theories and laws related to them. The methods used for calculations of lighting, its types, different systems, factors affecting it, and applications thereon, and studying the different types of light sources, their features, specifications and uses. The course includes examples and various applications of all lighting methods, including the use of computer software Dialux evo. |
| 5633 | Control Systems Lab. | 1 | |
| 8501 | Measurements and Smart Sensors | 3 | |
| 8502 | Measurements and Smart Sensors Lab | 1 | |
| 8503 | Signals and Systems | 3 | Signals and System (8503): Basic concept of continuous and discrete time signals and systems. Time-transformation of signals. System properties (memory, linearity, stability, ..etc), LTI systems. Convolution, Fourier Theorems for periodic and aperiodic signals for both continuous and discrete time signals. Sampling theorem. |
| 8504 | Electrical Drawing Using Computer | 1 | |
| 8773 | Multivariates Analysis | 3 | |
| 30240 | Numerical Methods Simulation Lab | 1 | |
| 30241 | Microcontroller and its applications | 3 | |
| 30242 | Electromagnetic Fields | 2 |
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| Course No رقم المساق | Course Name اسم المساق | Credit hours الساعات المعتمدة | Course Description وصف المساق |
|---|---|---|---|
| 4165 | Field Training I | 0 | |
| 4359 | Introduction to Graduation Project | 1 | General concepts and objectives of graduation project. Availability of information and resources. Scientific research. Computers in scientific research. Writing up graduation thesis. Proposed graduation project. Guide lines and preparations. |
| 4360 | Graduation Project | 3 | In this part of the project students must implement and test the design described in the “Introduction to Graduation Project”. |
| 4631 | Field Training II | 0 | |
| 5502 | Transmission and Distribution Elec. Lab | 1 | This laboratory introduce the practical means of the power system components, starting with transformer and their asymmetrical load performance, transmission line performance under different operation conditions, including no load performance, load combination performance (RLC), short circuit performance of the transmission line and the effects of earthing methods on the short circuit current such as solid earthing and inductive impedance earthing of the neutral point. Also transmission line compensation and resonance phenomena between L and C will be covered in addition to series and parallel connections of transmission line. Finally, busbars system and coupling between busbars will be covered in addition to synchronous generator tied to the grid and its performance under different load condition. |
| 5590 | Electrical Machines Lab. | 1 | "The Electrical Machine Lab is typically a practical course that aims to teach students about the fundamentals of electrical machines, their operating principles, and the various performance parameters that define their operation, The course syllabus might include the following topics: -Introduction to Electrical Machines: Types of electrical machines, construction, and working principles. -DC Machines as motors or generators: working principle, equivalent circuits, and testing. -Transformers: working principle, equivalent circuits, and testing. -AC Machines: Synchronous and asynchronous motors and generators, working principle, equivalent circuits, and testing. Control of Electrical Machines: Speed control of DC and AC motor |
| 5594 | Electrical Machines (II) | 3 | Three-phase transformers, construction, connection groups, voltage regulation, open and short circuit test and parallel operation. Three-phase induction motors, squirrel and slip ring. Open and short circuit test, starting procedures, speed regulation. Synchronous Machine, generator, motor and synchronous condenser, over and under excited machines, v-curve, current armature reaction, loading performance, power factor correction and parallel operation of synchronous generator. Synchronous motor starting and operation. |
| 5600 | Renewable Energy Systems | 3 | |
| 5602 | Power Systems Protection lab | 1 | This laboratory introduce the practical means of low voltage power system protection, starting with the various type of system earthing systems including TN, TT, and IT systems, study the effects of the system configuration on the fault current and touch voltage. Then, study the fault current path for each system and the system impedance measurements and using it in the sizing of the cables, fuses and circuit breakers (CB). Finally, study the tripping conditions for the CB and Residual Current Device (RCD), and its relationship with the system impedance and earth resistance. |
| 5634 | Electrical Workshop | 2 | Electrical workshop aims to build technical knowledge in the field of electrical control panels the workshop covers the following topics : contacts and switches , contactor circuits , latching and sequential circuits , motor control circuits ,starting and reversing , industrial counters and timers , industrial sensors and all needed protection devices |
| 5962 | Power System Protection | 3 | "- Influence of electrical current on humans, - Earthing concepts(TT, TN,IT) - Direct and indirect Protection - Automatic interruption of current (Fuses, Circuit breakers and RCD), - Earth resistance (definition and measurement) - Faults of Power Systems (Short circuit faults, Overvoltages and Undervoltages, Asymmetry, real Power Deficit, - Instrument Transformers (Current transformers and voltage transformers) - Calculation of three-Phase short circuit currents in electrical power networks. - Differential Protection. - Distance Protection. - Protection of Transformers. - Protection of electrical Motors. " |
| 5965 | Renewable Energy Laboratory | 1 | This lab introduces the students to the basic structure of renewable energy systems components. The lab covers the PV characteristics and the performance under different conditions and illuminations as well as their efficiency , the wind system components and architecture is also covered. The hybrid system and battery charge controllers are studied in depth. |
| 8067 | Electrical Power Systems Analysis | 3 | Introduction to electrical energy sources and power system components: (parameters and models of generators, transformers and transmission lines). Basic concepts: The unit of quantities system and its application to electrical power systems: single line representation of transmission lines for current and voltage, power relationships at the ends of transmission lines, compensation for reaction capacity. Load Flow: Problem Definition, Gauss Seidel, Newton Raphson (NR), Line Flows and Losses, Energy Flow Programs. Take advantage of switching transformers. Tension calculations in transmission lines. |
| 8516 | Building Management Systems Lab | 1 | "The Building Management Systems Lab is an innovative facility designed to provide students with a hands-on learning experience in the field of smart home automation. Through this lab, students will learn how to create schematic graphs for smart home automation and how to practically connect and configure them. This will enable them to gain a deeper understanding of the processes involved in building and managing a smart home system. One of the exciting features of this lab is the potential to connect the smart home system with a building management system (BMS) if the lab evolves. This will provide students with a more comprehensive understanding of how smart homes can be integrated with larger building systems to create a fully optimized and efficient living environment. Also pending on equipment affordability students will also have the opportunity to learn about the KNX protocol and practice using equipment that is available in the lab. This will allow them to gain hands-on experience with one of the most widely used protocols for smart home automation, giving them a competitive edge in the job market. " |
| 8529 | Electrical Distribution and Smart Grid | 3 | Introduction to distribution systems: substations, radial feeders, natural loads: a load of consumers, distribution of transformer loads, voltage drop calculation. Impedance and admittance calculations for overhead lines and ground cables. Electric load model, electric model of the distribution lines, Distribution feeder analysis. Methods for reducing losses in distribution networks. Introduction Smart grid, modeling, and power flow analysis of smart grid. Analysis of smart and traditional distribution networks by MATLAB and ETAP programs. |
| 8530 | Energy Sources and Sustainable Energy | 3 | "The student will learn the basic Concept of Energy, Energy and Sustainable Development, Current Energy Outlook, Renewable Energy Resources, Non-Renewable Energy Resources, Primary Supply of Energy to End-User, Scientific Principles of Renewable Energy, Limitations of Renewable Energy, Foreseen Future of Renewable Energy. Wind Energy Resources, Wind Energy Theory, Applications, Wind Turbine; History and Structure, Wind Turbine Farm Systems. Solar Radiation Concept and Solar Energy, Solar Thermal Applications, Direct Energy Conversion System, Non-grid and Grid connected Solar Energy Systems, Integration of Solar Energy in Building and Innovative Systems. Conservation of Energy Concept, Energy Efficiency, Energy Auditing, Rational Use of Energy in Buildings, Green Buildings and LEED concept. Understanding the basic terms of Fundamental of Power Plant. Application of Non-Conventional Energy Resources and Utilization . Introduction to various non-conventional (renewable) sources of energy. Knowing the characteristics of Steam Power Plant . Knowing the characteristics of Steam Generator. Knowing the characteristics of Steam Turbine. Knowing the characteristics of Diesel Power Plant " |
| 8531 | SCADA for Power Engineering | 2 | "Introduction to PLC: components, operation and input/output interfacing. Programming languages: Ladder Diagrams (LD); Function Block Diagrams (FBD). Internal Relays; Set/Reset; Edge Detection; Timers; Counters; Comparators; Analog Input/Output. Introduction to computer networking. SCADA systems: configuration, variables, users, GUI and animations, alarms, data logging, reports. Applications using training modules and simulation software. Both theoretical and practical parts of the course are covered in the Lab." |
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| Course No رقم المساق | Course Name اسم المساق | Credit hours الساعات المعتمدة | Course Description وصف المساق |
|---|---|---|---|
| 4104 | Electronics II | 3 | This course covers a wide variety of topics including small signal models for BJT. Small signals amplifiers designs and analysis of different configurations (CE, CC and CB).Multistage amplifiers. Small signal FET amplifier of different configurations (CS, CD and CG), composite amplifiers. Power amplifiers (classes A, B, AB and C). BJT and FET Frequency Response of Amplifiers. Differential amplifiers and their analysis. Operational Amplifiers with different applications. Design and analysis of different practical circuits using Op-Amp ICs and other components. Positive Feedback, Oscillators and Timers. |
| 4454 | Thermal Power and Heat Transfer | 3 | Introduction to thermodynamics heat transfer; concepts of work and heat; first law of thermodynamics; second law of thermodynamics; gas mixtures and properties; conduction: one-dimension, two-dimension, steady-state, and transient heat transfer; convection heat transfer: natural, forced, internal, and external heat transfer heat. Radiation heat transfer; boiling and condensation heat transfer; basics of heat exchanger design. |
| 4795 | Communication Engineering | 3 | (CWM): amplitude modulation, angle modulation, determination of bandwidth (BW) in CWM systems, receivers in CWM, noise in CWM systems, and signal-to-noise ratio (SNR). Pulse modulation: sampling process, pulse-amplitude modulation, quantization process, pulse-code modulation, and delta modulation. Baseband pulse transmission: line coding, pulse shaping, Nyquist criterion. Introduction to digital communications techniques: amplitude-shift keying (ASK), phase-shift keying (PSK), frequency-shift keying (FSK). |
| 5028 | Special Topics | 3 | This course includes topics which include projects and case studies in mechanical engineering are chosen according to special interest of both department and students. |
| 5503 | High Voltage Technology | 3 | Duties and future of high voltage technology, Generation and measurement of high AC, DC and impulse voltages , Stressing of isolations, Generation of high voltages, Classification and calculation of electrical field, Physical discharging theory of gases fluids and solid isolators, Electromagnetic compatibility (EMC).Ionization and decay processes. Photo-ionization, thermal, ionization. Electric breakdown in gases. Surge breakdown voltage-time lag. Corona discharges under switching surges. Breakdown in solid and dielectric. Generation of high voltage. Attenuation voltage. Transient voltage. Direct voltage. |
| 5505 | Economy of Elec. Energy | 3 | Optimal power flow, economic dispatch, Basic concepts from economics, economic dispatch and optimization, markets for electrical energy, participating in markets for electrical energy, system security and ancillary services, transmission networks and electricity markets, investing in generation, investing in transmission, and deregulation of power systems. Power factor improvement calculations and costs. |
| 5605 | Design Power Plants | 3 | The course aims to introduce the student to the design and performance of power plants to generate electric power that runs on fossil and nuclear fuels, analyze the work cycle of these plants, design the components of the plants and their performance, the mechanism of operating the plants, monitoring, controlling and protecting them, and how to choose them. According to economic factors, environmental influences, and the ability to do the calculation of these factors. The course will include topics in thermodynamics and power plant work cycle analysis; Fuel Combustion Accounts, Chemical Emission Control, Nuclear Energy Technology, and Technologies Emerging from Renewable Energy sources . |
| 5606 | Control and Stability of power system | 3 | Swing equation, synchronous machine model, steady-state stability, transient stability, and its applications, multi-machine stability, frequency breakdown, voltage breakdown, ...etc, control of power systems. |
| 5607 | Advanced Power Electronics | 3 | |
| 5608 | Power Systems Quality | 3 | Definitions and standards of power quality, kinds of power quality problems, sources of sags, swells and transient over-voltages, distribution system analysis and protection, protection devices, harmonic distortion, principles for controlling harmonics, devices for filtering harmonics, time and frequency domain methods of analysis, Fourier, Walsh, and Hartley transforms, monitoring power quality, and power quality improvement. |
| 5609 | Advanced Renewable Energy Systems | 3 | The course aims to enhance the student's ability to design and use solar cell technology and CSP technology in the construction, protection, and control of solar energy plants. It also aims to be able to design wind farms. Recognize the architectural considerations in the case of designing buildings whose walls consist of solar cells. The course also deals with any research program or new technology in renewable energy. |
| 5610 | Management electrical power and interconnected systems | 3 | This course aims to introduce the importance of electrical interconnection, its conditions, and its economic benefit. We also aim to introduce the student to the electrical interconnection between countries and study realistic examples of electrical interconnection in Palestine, the Arab world, and the world. Learn about tools, measuring devices, management and control programs, and coordination and control mechanisms in such systems. |
| 5611 | Electricity Markets and Risk | 3 | Economics, Markets, and Electricity: 1) Introduction to economics, engineering, and economics. 2) The main electrical market players and models of competition. 3) Fundamentals of Markets: Supply and demand curves, market equilibrium, welfare, binary central markets, and auctions. 4) Firm theory: Long- and short-run costs, optimal production versus marginal average cost, perfect competition and perfection, Bertrand and Cournot models. 5) Risk, markets, and contracts. The concept of risk, sources of risk, and risk management. Spot and futures markets, futures contracts, options, and contracts for difference. |
| 5612 | Power System Reliability | 3 | Introduction to electrical power system subsystems: generation, transmission, distribution. Fundamental probability theory and its distribution. Network modeling and computation. Reliability analysis: * Generation: power generation, techniques, index numbers, system interconnection, operating reserve. Transport: network components and their numbers, complex systems. Distribution: radial and ring networks, parallel and mesh networks. |
| 5613 | Load Forecasting | 3 | Introduction to electrical loads and their classification, factors affecting the prediction of electrical loads, analysis of loads and conducting research operations on them, characteristics of electrical load growth, methods for predicting electrical loads (a) extrapolation (b) techniques for participating in relationships. Energy forecasting, maximum load forecasting, reaction capacity forecasting, sensitivity forecasting to the effects of weather and non-weather on electrical loads, annual forecasting, monthly forecasting, and total forecasting. |
| 5617 | Electrical Drive | 3 | Introduction to electric drives, Dynamics of a mechanical drive, Characteristics curves and control methods of electrical drives, Static converters for Electric Drive, , controlled AC drives, Frequency control of synchronous generators (Control of Generation), ac servo motor drives, Selection of motor power rating. |
| 5621 | Apparatus and devices in electrical energy systems | 3 | It focuses on the study and analysis of tools and devices used in electrical power systems. The course aims to enable students to acquire the necessary skills to select, install and maintain these tools and devices in an efficient and safe manner in accordance with industry standards and regulations. |
| 5963 | Energy Auditing and Rationalization | 3 | Ways of energy auditing and conservation: lighting, improving power factor, load managements, using high efficiency motors. Choosing the appropriate fuel and take into account the impact of leaking thermal energy in buildings. Identifying the main objective of energy audits, data collection methods, cost reduction, environmental emission reduction, and quality of service improvement. Knowledge of building automation technology (KNX and BMS); in terms of physical and programmatic structure and its importance in building management and energy conservation. Application this technology in the automation of the building model contains (lighting, electric loads and motor servo used in the curtains and heating system in the building). |
| 8532 | Safety Rules and Electrical Codes | 3 | |
| 8533 | AI Programming tools | 3 | |
| 8534 | Electrical Vehicles | 3 | |
| 8535 | Electrical transportation systems and Networks | 3 | |
| 8536 | Digital Protection in Electrical Power systems | 3 | |
| 8537 | E-marketing and E-commerce in the electrical Sectors | 3 |