Electronic Engineering

Staff member? Login here

Academic Year of Entry: 2015/16 - 2016/17 - 2017/18 - 2018/19 - 2019/20 - 2020/21 - 2021/22 - 2022/23 - 2023/24
Course overview
(MSc) Master of Science
Electronic Engineering
Current
University of Essex
University of Essex
Computer Science and Electronic Engineering (School of)
Colchester Campus
Masters
Full-time or part-time
MSC H61012
28/11/2012

Details

Professional accreditation

None

Admission criteria

A degree with an overall 2:1.

IELTS (International English Language Testing System) code

IELTS 6.0 overall with a minimum component score of 5.5

Course qualifiers

A course qualifier is a bracketed addition to your course title to denote a specialisation or pathway that you have achieved via the completion of specific modules during your course. The specific module requirements for each qualifier title are noted below. Eligibility for any selected qualifier will be determined by the department and confirmed by the final year Board of Examiners. If the required modules are not successfully completed, your course title will remain as described above without any bracketed addition. Selection of a course qualifier is optional and student can register preferences or opt-out via Online Module Enrolment (eNROL).

None

Rules of assessment

Rules of assessment are the rules, principles and frameworks which the University uses to calculate your course progression and final results.

Additional notes

None

External examiners

External Examiners provide an independent overview of our courses, offering their expertise and help towards our continual improvement of course content, teaching, learning, and assessment. External Examiners are normally academics from other higher education institutions, but may be from the industry, business or the profession as appropriate for the course. They comment on how well courses align with national standards, and on how well the teaching, learning and assessment methods allow students to develop and demonstrate the relevant knowledge and skills needed to achieve their awards. External Examiners who are responsible for awards are key members of Boards of Examiners. These boards make decisions about student progression within their course and about whether students can receive their final award.

Key

Core You must take this module.
You must pass this module. No failure can be permitted.
Core with Options You can choose which module to study.
You must pass this module. No failure can be permitted.
Compulsory You must take this module.
There may be limited opportunities to continue on the course/be eligible for the degree if you fail.
Compulsory with Options You can choose which module to study.
There may be limited opportunities to continue on the course/be eligible for the degree if you fail.
Optional You can choose which module to study.
There may be limited opportunities to continue on the course/be eligible for the degree if you fail.

Year 1 - 2015/16

Exit Award Status
Component Number Module Code Module Title Status Credits PG Diploma PG Certificate
01 CE901-7-SU-CO MSc Project and Dissertation Core 60
02 CE701-7-AU-CO Theory of Signals and Systems Compulsory 15
03 CE705-7-AU-CO Programming in Python Compulsory 15
04 CE865-7-AU-CO Programming Embedded Systems Compulsory 15
05 CE721-7-SP-CO Electronic System Design & Integration Compulsory 15
06 CE902-7-FY-CO Professional Practice and Research Methodology Compulsory 15
07 OPTION FROM LIST Optional 15
08 OPTION FROM LIST Optional 15
09 OPTION FROM LIST Optional 15

Exit awards

A module is given one of the following statuses: 'core' – meaning it must be taken and passed; 'compulsory' – meaning it must be taken; or 'optional' – meaning that students can choose the module from a designated list. The rules of assessment may allow for limited condonement of fails in 'compulsory' or 'optional' modules, but 'core' modules cannot be failed. The status of the module may be different in any exit awards which are available for the course. Exam Boards will consider students' eligibility for an exit award if they fail the main award or do not complete their studies.

Programme aims

To provide postgraduate training in Electronic Engineering Systems and to produce engineers with an understanding of the design, development, planning and implementation of the electronic and communications systems and networks of the future.

To prepare students for careers in advanced research and/or industry by extending their knowledge and skills in a specialised area of electronics, communications and information systems.

To enable students to contribute to future developments in their field by providing them with an understanding of recent advances and current research activity.

To develop students' ability to make a critical evaluation of the theories, techniques and systems used in their chosen area of specialisation.

To develop research and problem-solving techniques in their chosen area of specialisation.

To develop students' ability to undertake research through practical project experience.

Learning outcomes and learning, teaching and assessment methods

On successful completion of the programme a graduate should demonstrate knowledge and skills as follows:

A: Knowledge and understanding

A1: Fundamentals of theory of signals, systems, and networks including problem solving techniques.

A2: A broad range of principles and techniques governing the analysis, design and implementation of communication and information systems and subsystems.

A3: Advanced mathematical, experimental and computational methods relevant to communications including networks, network architecture and services.

A4: Advanced topics in selected areas of modern optical and wireless networking hardware and software, and switching for current and future communication systems.

A5: A selected current research area including the development of the area.

Learning methods

A1 is developed through lectures and course work.

A2-A3 are developed through lectures, course work, and practical work.

A4 is developed through mainly lectures where in some cases industrial lecturers are involved in order to emphasize the current industrial practices.

A5 is developed principally through a research project.

Assessment methods

A1-A3 are examined through coursework, tests, and exams.

A4 is assessed through exams, one module through exam and coursework and project.

A5 is assessed by means of a written report and oral defence.

B: Intellectual and cognitive skills

B1: Integrate knowledge and information in order to explain and evaluate networking technologies.

B2: Explain, evaluate and compare modern communication technologies.

B3: Use knowledge and data in order to plan and evaluate parts of communication networks.

B4: Assimilate and link information presented in different courses.

B5: Plan and conduct an independent research project under the guidance of a supervisor.

Learning methods

B1-B3 are developed principally through lectures, problem classes, seminars, and practical work.

B4 is mostly developed through problem classes, research project, course work and practicals.

B5 is developed through research project guided by the supervisor.

Assessment methods

B1-B3 are assessed through written examination and oral assessment in the networks laboratory.

B4 & B5 are assessed through reports on practical work, the project report, and examinations.

C: Practical skills

C1: To set-up experimental communication systems and to use specialised measurement equipment.

C2: To develop specialised computer programmes and simulation software.

C3: To develop and/or make effective use of mathematics and/or mathematical software packages for communications.

C4: To write and report complex technical concepts, issues and results of investigations.

C5: To work in group contributing to a practical/research work.

Learning methods

C1 is developed through practicals and the research project.

C2-C3 are developed through practicals, problem classes, research projects, and lectures.

C4-C5 are developed through practicals, course work and the research project.

Assessment methods

C1 and C2 are assessed in reports on laboratory experiments.

C3 is assessed principally in the project report, and to a lesser extent in reports on experiments.

C4 and C5 are assessed through oral examination of selected practicals and the project oral.

D: Key skills

D1: To report effectively, both written and oral, in structured fashion on independent and group work.

D2: To use current computer systems for communication, data acquisition, data management and data analysis.

D3: To analyse technical problems involving numerical values.

D4: To learn top-down/bottom-up approach and systematically explore, combine, deduce techniques for solving complex problems.

D5: To work as part of a group to set-up experiments and do measurement, and analyse the associated results.

D6: To evaluate background knowledge, assess learning pace, plan work with realistic targets.

Learning methods

D1, D2 are developed through course work and project work and project reports.

D3 and D4 are developed through problem classes, project work, and course work.

D5 is developed through practicals.

D6 is developed through project work, practicals, and course work

Assessment methods

D1 is assessed through oral and written project report and laboratory report.

D2 is assessed through project work, laboratory work, and course work.

D3 is assessed mainly through the examination.

D4 is assessed through the examination, project work and coursework.

D5 is assessed through the laboratory work.

D6 is assessed through project.


Note

The University makes every effort to ensure that this information on its programme specification is accurate and up-to-date. Exceptionally it can be necessary to make changes, for example to courses, facilities or fees. Examples of such reasons might include a change of law or regulatory requirements, industrial action, lack of demand, departure of key personnel, change in government policy, or withdrawal/reduction of funding. Changes to courses may for example consist of variations to the content and method of delivery of programmes, courses and other services, to discontinue programmes, courses and other services and to merge or combine programmes or courses. The University will endeavour to keep such changes to a minimum, and will also keep students informed appropriately by updating our programme specifications.

The full Procedures, Rules and Regulations of the University governing how it operates are set out in the Charter, Statutes and Ordinances and in the University Regulations, Policy and Procedures.

Contact

If you are thinking of studying at Essex and have questions about the course, please contact Undergraduate Admissions by emailing admit@essex.ac.uk, or Postgraduate Admissions by emailing pgadmit@essex.ac.uk.

If you're a current student and have questions about your course or specific modules, please contact your department.

If you think there might be an error on this page, please contact the Course Records Team by emailing crt@essex.ac.uk.