• Postgraduate taught
  • MSc

Control, Robotics and Optimisation

Study aspects of control theory and optimisation and their application to the design of automated systems.

Course key facts

Minimum entry standard

  • First-class Honours in Electrical / Electronic Engineering or a related subject with a substantial Electrical / Electronic Engineering component.

View full entry requirements

Course overview

Develop a deep understanding of control engineering and optimisation, applying these core principles to the design of sophisticated automated and autonomous systems. 

You will gain hands-on expertise with industry-standard computational tools, learning to model, simulate, and deploy high-performance control architectures that solve real-world physical constraints.

Because control and optimisation provide a universal framework for understanding dynamic physical systems, this degree offers unparalleled career flexibility. You will graduate with the specialist knowledge to transition seamlessly into rapidly evolving sectors such as robotics, aerospace, biomedical systems, and smart energy grids. 

Through intensive multidisciplinary individual and team projects, you will develop the leadership, communication, and collaborative skills essential for driving innovation in modern industry.

Structure

This page is updated regularly to reflect the latest version of the curriculum. However, this information is subject to change.

Find out more about potential course changes.

Please note: it may not always be possible to take specific combinations of modules due to timetabling conflicts. For confirmation, please check with the relevant department.

You’ll take one core module.

Core modules

You will choose a total of eight elective modules, including a minimum of two each from Group C Control, Group R Robotics and Group O Optimisation.

Group C

Group O

Group R

The individual research project is your opportunity to explore a topic that genuinely interests you while building the advanced skills valued by universities and employers alike. You will deepen your subject knowledge through independent research into a practical problem, strengthen your report-writing and presentation abilities, and gain practical experience in managing a substantial piece of work from start to finish. With support from a supervisor and clearly structured deliverables, the project is designed to help you grow in confidence, demonstrate originality, and produce a high-quality final report and poster presentation .

Professional accreditation

Accredited by the Institution of Engineering and Technology (IET) on behalf of the Engineering Council as meeting the requirements for Further Learning for registration as a Chartered Engineer. Candidates must hold a CEng accredited BEng/BSc (Hons) undergraduate first degree to fully meet the CEng registration educational requirements.

Our accreditation agreement with the Institution of Engineering and Technology is renewed every 5 years, and the current agreement runs between 2025 and 2029.

Teaching and assessment

Balance of teaching and learning

This is a general guide to how teaching and learning are usually balanced across this course. The methods used may change based on the modules you take.

Key

  • Lectures, seminars and tutorials
  • Independent study

  • 20% Title 1 goes here
  • 35% Title 2 goes here
  • 45% Title 3 goes here

Teaching and learning methods

  • Person at lectern giving speech
    Lectures
  • Problem-solving classes
  • Laboratory sessions
  • Four students sitting in a tutorial
    Tutorials
  • Blackboard virtual learning environment
    Virtual learning environment
  • A group of people interacting
    Group work
  • Individual projects
  • A person studying independently
    Independent study

Balance of assessment

This is an example of how assessments are usually divided, based on a typical pathway through the course. The actual breakdown may be different depending on the modules you choose.

Key

  • Coursework
  • Examinations
  • Practical

  • 50% Title 1 goes here
  • 40% Title 2 goes here
  • 10% Title 3 goes here

Assessment methods

  • A person completing a written exam
    Written exams
  • Person completing coursework
    Coursework
  • Individual project

Entry requirements

We consider all applicants on an individual basis, welcoming students from all over the world.

How to apply

Applications open on Wednesday 30 September 2026.

Fees and funding

Home fee

2027 entry

Not set
As a guide, the fee for 2026-27 was £19,400

Overseas fee

2027 entry

Not set
As a guide, the fee for 2026-27 was £45,000

How will studying at Imperial help my career?

Develop engineering skills in a wide range of fields that employers highly value.

With specialised knowledge, you'll be highly sought after in a range of engineering sectors including electrical, aeronautical, chemical and process control, and mechanical.

Other potential career paths include consultancy, finance, or management.

Our graduates often pursue further study in master's programs or doctoral research.

Terms and conditions

There are some important pieces of information you should be aware of when applying to Imperial. These include key information about your tuition fees, funding, visas, accommodation and more.

Read our terms and conditions

You can find further information about your course, including degree classifications, regulations, progression and awards in the programme specification for your course.

Programme specifications