By graduation, students will be able:
A. Knowledge and Understanding
At the end of the programme students should be able to demonstrate knowledge and
understanding of the following:
A1. State-of- the-art knowledge in renewable energy technologies, in terms of: the sources,
technologies, systems, performance, and applications of all the major types of renewable energy;7
approaches to the assessment of renewable energy technologies; the processes, equipment,
products, and integration opportunities of biomass-based manufacturing.
A2. State-of- the-art knowledge in process systems...
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By graduation, students will be able:
A. Knowledge and Understanding
At the end of the programme students should be able to demonstrate knowledge and
understanding of the:
A1. Advanced concepts, principles and theories of power system components
A2. Theory of power system operation
A3. Power system protection techniques
A4. Describe and classify power quality issues in a power system
A5. Understand and effectively use standards for quantifying power quality
A6. Analyses of power systems harmonics and transient through multiple methods
A7. Recognize symptoms of power quality...
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By graduation, students will be able:
A. Knowledge and Understanding
At the end of the programme students should be able to demonstrate knowledge and
understanding of the following:
A1. Carry out technical and economic assessment of off-grid, mini-grid and grid connected
power generation systems (i.e. conventional and non-conventional power generation
technologies)
A2. Carry out technical and economic assessment of power transmission and generation
systems
A3. Develop analytical skills required to apply results of economic analysis in the energy
sector, to assist in both policy...
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Graduates from this PhD programme by research will be able to:
A. Knowledge and Understanding
At the end of of the research students should possess skills to:
A1. Critically examine the background literature relevant to the electrical power systems field;
A2. Develop skills in making and testing hypotheses, in developing new theories, and in planning and conducting experiments in electrical power systems field;
A3. Develop or design electrical power systems solutions;
A4. Formulate Mathematical methods connected to electrical power systems and their impact on the theory of...
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Graduates from this PhD programme by research will be able to:
A. Knowledge and Understanding
At the end of of the research students should possess skills to:
A1. Critically examine the background literature relevant to the energy economics field;
A2. Develop skills in making and testing hypotheses, in developing new theories, and in Planning and simulation energy economics solutions;
A3. Carry out technical and economic assessment of off-grid, mini-grid and grid connected power generation systems (i.e. conventional and non-conventional power generation technologies);
A4. Carry...
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