Module overview
Aims and Objectives
Learning Outcomes
Subject Specific Intellectual and Research Skills
Having successfully completed this module you will be able to:
- Describe the characteristics of various types of electrical machines; advantages and disadvantages that different motors drives will bring to an application
- Solve problems related to the analysis of performance and characteristics of electrical machines.
- Apply equivalent circuits to performance prediction, interpret results and correlate them with theoretical predictions, perform design calculations for drives.
- Understand the operation of modern drive systems applied to industrial applications including robotics and advanced machine tools.
Transferable and Generic Skills
Having successfully completed this module you will be able to:
- Discuss the wide range of issues that impact on the use of drive system in the industrial context, including safety, efficiency, sustainability and costs.
- Transfer understanding and theories from one discipline to another, in particular from the mechanical design to the electrical power domain.
Knowledge and Understanding
Having successfully completed this module, you will be able to demonstrate knowledge and understanding of:
- Construction and design issues associated with electric machines based on fundamental principles
- The principles of operation of electrical generators and motors; fundamental characteristics of various types of machines
Subject Specific Practical Skills
Having successfully completed this module you will be able to:
- Conduct simple experiments on rotating electrical machines and transformers
- Analyse a specific application and produce the drive requirements that will result in the selection of sizing of a suitable drive system.
Syllabus
Learning and Teaching
Teaching and learning methods
Type | Hours |
---|---|
Preparation for scheduled sessions | 18 |
Follow-up work | 12 |
Tutorial | 6 |
Completion of assessment task | 12 |
Lecture | 30 |
Specialist Laboratory | 6 |
Wider reading or practice | 30 |
Revision | 36 |
Total study time | 150 |
Resources & Reading list
Textbooks
John Hindmarsh (1995). Electrical Machines and their Applications. Butterworth-Heinemann.
K Karsai, D Kereny, L Kiss (1987). Studies in Electrical and Electronic Engineering 25, Large Power Transformers. Elsevier.
J. Weidauer, R. Messer (2014). Electrical Drives: Principles, Planning, Applications, Solutions. Publicis Publishing.
Charles I Hubert (1991). Electric Machines, Theory, Operation, Application, Adjustment and Control. Macmillan Publishing Company.
Denis O'Kelly (1991). Performance and Control of Electrical Machines. Mc-Graw Hill Book Company.
RM Crowder. Electric Drives and Electromechanical Systems - Applications and Control.
A E Fitzgerald, Charles Kingsley, Stephen D Umans (2002). Electric Machinery. Mc-Graw-Hill Higher Education.
Stephen J Chapman (2001). Electrical Machinery and Power System Fundamentals. McGraw-Hill Higher Education.
Hammond P & Sykulski J K (1994). Engineering Electromagnetism - Physical Processes and Computation. Oxford University Press.
K.T. Chau (2015). Electric Vehicle Machines and Drives – Design, Analysis and Application. Wiley.
Sarma M S (1994). Electric Machines, Steady-state Theory and Dynamic Performance. West Publishing Company.
Dino Zorbas (1989). Electric Machines, Principles, Applications, and Control Schematics. West Publishing Company.
Assessment
Summative
This is how we’ll formally assess what you have learned in this module.
Method | Percentage contribution |
---|---|
Laboratory | 10% |
Examination | 80% |
Coursework | 10% |
Referral
This is how we’ll assess you if you don’t meet the criteria to pass this module.
Method | Percentage contribution |
---|---|
Examination | 100% |
Repeat
An internal repeat is where you take all of your modules again, including any you passed. An external repeat is where you only re-take the modules you failed.
Method | Percentage contribution |
---|---|
Examination | 100% |
Repeat Information
Repeat type: Internal & External