BSc in Electrical Engineering – Power and Energy Engineering
3.5 to 4 Years
128 hours Credit Hours
English
Fall & Spring
Overview
The Power & Energy Engineering program is designed to prepare engineers capable of analyzing, designing, implementing, and maintaining electrical power generation, transmission, and distribution systems. Graduates are equipped to work in a wide range of government and private sectors that develop or support electrical power infrastructure. The program provides comprehensive training in both conventional power systems, which rely on fossil fuels, and alternative systems that utilize renewable energy sources such as solar, wind, geothermal, and hydropower. In addition, students gain knowledge and practical skills in modern smart grid technologies.
Program Educational Outcomes
The graduates of the Power & Energy program shall be:- Involved in distinguished careers where power & energy engineering technical knowledge and skills are applied in a variety of businesses and inter-disciplinary settings.
- Perusing professional activities or postgraduate studies to continuously expand their skills and knowledge in power & energy engineering and related fields.
- Contributing to a team of professionals and performing leadership roles to tackle challenging power & energy engineering projects with awareness of ethical and social responsibilities.
Student Outcomes of Power & Energy Engineering
The student outcomes of Power & Energy engineering program are:- an ability to identify, formulate, and solve complex engineering problems by applying principles of engineering, science, and mathematics
- an ability to apply engineering design to produce solutions that meet specified needs with consideration of public health, safety, and welfare, as well as global, cultural, social, environmental, and economic factors
- an ability to communicate effectively with a range of audiences
- an ability to recognize ethical and professional responsibilities in engineering situations and make informed judgments, which must consider the impact of engineering solutions in global, economic, environmental, and societal contexts
- an ability to function effectively on a team whose members together provide leadership, create a collaborative and inclusive environment, establish goals, plan tasks, and meet objectives
- an ability to develop and conduct appropriate experimentation, analyze and interpret data, and use engineering judgment to draw conclusions
- an ability to acquire and apply new knowledge as needed, using appropriate learning strategies.
Admission Requirements
| English | Other |
| High school score 80% or above in English or pass the UD EPT | High school score 80% or above in Math & Physics in addition to Biology or Chemistry |
Who Is This Program For?
The program for a Bachelor of Science in Power and Energy Engineering is typically designed for students who are interested in studying and pursuing a career in the field of power generation, transmission, and distribution. It is particularly suitable for individuals who have an aptitude for mathematics, physics, and engineering principles.
This program is ideal for students who wish to gain a deep understanding of energy systems, renewable energy technologies, power generation methods, energy conversion, and sustainable energy practices. The curriculum often covers topics such as electrical engineering, thermodynamics, power electronics, energy management, control systems, and renewable energy systems.
Graduates of a Bachelor of Science in Power and Energy Engineering program can pursue various career paths in the energy sector. They may work in power generation plants, electrical utilities, renewable energy companies, engineering consulting firms, research institutions, or government agencies. Job roles can include power system engineers, energy analysts, renewable energy project managers, electrical engineers, and energy consultants, among others.
It is worth noting that specific program details and curriculum can vary between universities, so it is important to research and review the course offerings of individual institutions to find the best fit for your interests and career goals.
Career Opportunities
A Bachelor of Science in Power and Energy Engineering opens up a range of career opportunities in the field of power generation, transmission, distribution, and renewable energy. Here are some potential career paths for graduates of this program:
- Power Systems Engineer: Power systems engineers are responsible for designing, operating, and maintaining electrical power systems. They work on tasks such as power system analysis, grid integration of renewable energy sources, system protection, load forecasting, and optimizing power generation and distribution.
- Renewable Energy Engineer: With a focus on sustainable energy practices, graduates can work as renewable energy engineers. They design and implement renewable energy systems such as solar, wind, geothermal, and biomass. Their work involves assessing site feasibility, optimizing energy production, and ensuring efficient integration with the existing power grid.
- Energy Analyst: Energy analysts evaluate energy consumption patterns and identify ways to improve energy efficiency. They conduct energy audits, analyze data, and propose strategies to reduce energy waste and optimize energy usage in industrial, commercial, or residential settings.
- Power Plant Engineer: Power plant engineers are involved in the operation and maintenance of power generation facilities, such as thermal power plants, hydroelectric plants, or nuclear power plants. They monitor equipment performance, ensure compliance with safety regulations, and troubleshoot technical issues.
- Power Electronics Engineer: Power electronics engineers specialize in the design and development of electronic devices and systems for power conversion and control. They work on projects related to energy storage, electric vehicle charging systems, power converters, and smart grid technologies.
- Energy Consultant: Energy consultants provide expert advice to organizations or individuals on energy-related matters. They may assess energy needs, recommend energy-efficient solutions, analyze energy costs, and develop sustainability strategies.
- Research and Development (R&D) Engineer: Graduates can pursue research and development roles in both industry and academia. They contribute to advancing energy technologies, developing new power generation methods, improving energy storage systems, or conducting research on renewable energy integration.
- Project Manager: Project managers in the power and energy sector oversee the planning, coordination, and execution of energy-related projects. They manage timelines, budgets, and resources to ensure successful project completion.
Estimated Salary Range
The salary range for individuals with a Bachelor of Science in Power and Energy Engineering in the United Arab Emirates (UAE) can vary based on several factors such as experience, job role, industry, and location. Salaries can also be influenced by market demand and economic conditions. It's important to note that the following figures are estimates and can vary:
- Entry-Level Positions: For fresh graduates with little to no experience, entry-level positions in the power and energy engineering field in the UAE may offer a salary range of approximately AED 5,000 to AED 10,000 per month (AED stands for United Arab Emirates Dirham).
- Mid-Level Positions: As professionals gain more experience and expertise, they can expect higher salaries. Mid-level positions in power and energy engineering in the UAE may offer a salary range of approximately AED 10,000 to AED 20,000 per month.
- Senior-Level Positions: With significant experience and managerial responsibilities, senior-level positions in power and energy engineering can command higher salaries. The salary range for senior professionals in the UAE may vary from AED 20,000 to AED 40,000 per month or more.
Study Plan
Year 1
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Year 2
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Year 3
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Year 4
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Technical Elective Course List (Power & Energy Concentration)
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Common Technical Elective Course List
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GUCR Elective Course List
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Year 1
| Semester 1 | ||||
| Course Code | Course Title | Prerequisite | Co-requisite | C.H. |
| ENGL 100 | English 1 | IELTS 5.0 | None | 3 |
| EMTH 100 | Calculus 1 for Engineering | None | None | 3 |
| GPHY 110 | Physics I for Engineering | None | None | 3 |
| GPHY-L 110 | Physics I Lab for Engineering | None | GPHY 110 | 1 |
| GECE 100 | General Chemistry 1 | None | None | 3 |
| ENIN 100 | Engineering Innovation | None | None | 3 |
| Semester Credits | 16 | |||
| Accumulated Credits | 16 | |||
| Semester 2 | ||||
| Course Code | Course Title | Prerequisite | Co-requisite | C.H. |
| ENGL 105 | English 2 | ENGL 100 OR ENGL 110 | None | 3 |
| EMTH 150 | Calculus 2 for Engineering | EMTH 100 | None | 3 |
| GPHY 160 | Physics II for Engineering | GPHY 110, GPHY-L 110 | None | 3 |
| GPHY-L 160 | Physics II for Engineering Lab | GPHY 110, GPHY-L 110 | GPHY 160 | 1 |
| ENAP 150 | Computer Algorithms & Programing | None | None | 3 |
| GEST 100 | Emirati Studies | ENGL 100 / ENGL 110 | None | 3 |
| Semester Credits | 16 | |||
| Accumulated Credits | 32 | |||
Year 2
| Semester 3 | ||||
| Course Code | Course Title | Prerequisite | Co-requisite | C.H. |
| EMTH 200 | Calculus 3 | EMTH 150 | None | 3 |
| EMTH 250 | Advanced Math I for Engineering | EMTH 150 | None | 3 |
| EMTH-L 250 | Advanced Math I Lab for Engineering | EMTH 150 | EMTH 250 | 1 |
| ENDD 210 | Digital Logic Design | ENAP 150 | None | 3 |
| ENDD-L 210 | Digital Logic Design Lab | ENAP 150 | ENDD 210 | 1 |
| ENEC 210 | Electric Circuits I | EMTH 150, GPHY 160, GPHY-L 160 | None | 3 |
| ENEC-L 210 | Electric Circuits I Lab | EMTH 150, GPHY 160, GPHY-L 160 | ENEC 210 | 1 |
| ENEE 300 | Engineering Economics | EMTH 100 | None | 3 |
| Semester Credits | 18 | |||
| Accumulated Credits | 50 | |||
| Semester 4 | ||||
| Course Code | Course Title | Prerequisite | Co-requisite | C.H. |
| ENMG 300 | Electromagnetics | GPHY150, EMTH200, EMTH250 | None | 3 |
| EMTH 260 | Advanced Math II | EMTH 250 | None | 3 |
| ENGL 220 | Communication Skills | ENGL 105 Or ENGL 120 | None | 3 |
| ENEL 260 | Electronics I | ENEC 210, ENEC-L 210 | None | 3 |
| ENEL-L 260 | Electronics I Lab | ENEC 210, ENEC-L 210 | ENEC 260 | 1 |
| ENEC 250 | Electric Circuits 2 | ENEC 200 | None | 3 |
| Semester Credits | 16 | |||
| Accumulated Credits | 66 | |||
Year 3
| Semester 5 | ||||
| Course Code | Course Title | Prerequisite | Co-requisite | C.H. |
| ENSS 300 | Signals & Systems | EMTH 260 | None | 3 |
| ENPR 300 | Probability & Random Processes | EMTH150 | None | 3 |
| ENMP 310 | Microprocessors | ENDD 210, ENDD-L 210 | None | 3 |
| ENMP-L 310 | Microprocessors Lab | ENDD 210, ENDD-L 210 | ENMP 310 | 1 |
| GIEC 105 | Innovation, Entrepreneurship & Career Planning | ENGL 120 | None | 3 |
| GUCR Elective | 3 | |||
| Semester Credits | 16 | |||
| Accumulated Credits | 82 | |||
| Semester 6 | ||||
| Course Code | Course Title | Prerequisite | Co-requisite | C.H. |
| ENCS 310 | Communication Systems | ENSS 300 | None | 3 |
| ENCS-L 310 | Communication Systems Lab | ENSS 300 | ENCS 310 | 1 |
| EECS 300 | Control Systems | ENSS 300 | None | 3 |
| ENDP 350 | Digital Signal Processing | ENSS 300 | None | 3 |
| ELPE 340 | Power & Machines | ENMG 300, ENEC 250 | None | 3 |
| ELCE 340 | Artificial Intelligence | ENAP150, EMTH 255 | None | 3 |
| Semester Credits | 16 | |||
| Accumulated Credits | 98 | |||
Year 4
| Semester 7 | ||||
| Course Code | Course Title | Prerequisite | Co-requisite | C.H. |
| ELPE 400 | Power System Analysis | ELPE 340 | None | 3 |
| ENIN410 or ENIN470 | Graduate Trainee (GT) / Learn Earn And Progress (LEAP) Program / Industry Project (16 weeks) | ≥ 90 CH | None | 6 |
| Technical Elective 1 | ** | None | 3 | |
| ENPR 401 | Graduation Project -1 | ≥ 96 CH | None | 3 |
| Semester Credits | 15 | |||
| Accumulated Credits | 113 | |||
| Semester 8 | ||||
| Course Code | Course Title | Prerequisite | Co-requisite | C.H. |
| Technical Elective 2 | ** | None | 3 | |
| Technical Elective 3 | ** | None | 3 | |
| Technical Elective 4 | ** | None | 3 | |
| Technical Elective 5 | ** | None | 3 | |
| ENPR 402 | Graduation Project -2 | ENPR 401 | None | 3 |
| Semester Credits | 15 | |||
| Accumulated Credits | 128 | |||
Technical Elective Course List (Power & Energy Concentration)
| Select any 4 to 5 courses (12 to 15 CH) from below | ||||
| S. No | Course Code | Course Title | Prerequisite | Co-requisite |
| ELPE 401 | Power Distribution & Smart Grid | ELPE 340 | None | 3 |
| ELPE 403 | High Voltage Engineering | ELPE 340 | None | 3 |
| ELPE 404 | Electric Drives | ELPE 340 | None | 3 |
| ELPE 405 | Power Electronics | ENEL 250, ENEC 250 | None | 3 |
| ELPE 406 | Power System Protection | ELPE 340 | None | 3 |
| ELPE 407 | Renewable Energy Systems | ELPE 400 | None | 3 |
Common Technical Elective Course List
| Select a maximum of 1 course (3 CH) from any concentration | ||||
| Course Code | Course Title | Prerequisite | Co-requisite | |
| ENEL 400 | Solar Energy Technology | ENEL 250 | None | 3 |
| CECN 400 | Communication Networks | ENAP 150 | None | 3 |
| ENES 400 | Embedded Systems | ENMP 300 | None | 3 |
| ELPE 408 | Industrial Instrumentation | EECS 300 | None | 3 |
| ENEL 401 | CMOS Design | ENEL 250 | None | 3 |
GUCR Elective Course List
| Select any 2 course (6 CH) from below | ||||
| Course Code | Course Title | Prerequisite | Co-requisite | |
| GSOC 100 | Sociology and Society | ENGL 100/ ENGL 110 | None | 3 |
| GHSO 100 | Health and Society | None | ENGL 100 OR ENGL 110 | 3 |
| GSUS 200 | Sustainability | ENGL 100/ ENGL 110 | None | 3 |
| GPSY 100 | Psychology and Society | ENGL 100/ ENGL 110 | None | 3 |
| GCHI 100 | Chinese 1 | None | 3 | |
| GABU 100 | Arabic for Business | None | 3 | |
| GISL 100/105 | Islamic Thought | None | None | 3 |
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