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Systems Engineering & Functional Safety WM-984-15

Recorded assessment brief

In this assessment, you are asked to develop an engineering project following the System Engineering (SE) V method and SE life cycle. The project is focused on the development of a battery charging system for automotive applications based on renewable energy sources.

Following the SE approaches, the project must consist of:

· SE methods presentation and analysis;

· V-method application presentation and analysis;

· Customer needs requirements

· Concept development

· Global and cascaded requirements to each of the central sub-systems.

· Functional analysis.

· Pre-development and high-level engineering design.

· Interface analysis and design verification

Please follow the guidance file SEFS IMA project.pdf available in Moodle. 

The input parameters must be specified in the ranges according to the guidance given on page 16.

Time limit

15 min (+/- 10%)

Expectations for the submission

Video format MP4, PowerPoint PPTX.

Module learning outcomes (numbered)

LO 1. Critically evaluate the Systems Engineering methods and approaches for the entire System Engineering life cycle, showing their application in the Electric Drivetrain systems.

LO 2. Evaluate customer needs, interpret the global requirements and cascade requirements to the sub-systems in advanced complex Electric Drivetrain systems.

LO 3. Systematically define the concept of operation, functional analysis, high-level and detailed engineering design procedures for Electric Drivetrain systems.

LO 4. Systematically define Electric Drivetrain sub-systems assembling, testing and validation procedures, along with risk assessment and risk mitigation techniques.

LO 5. Comprehensively apply functional safety principles, HARA and ASIL evaluation in the design of complex Electric Drivetrain systems.

LO 6. Demonstrate the V-method application with a specific case study

 

Learning outcomes assessed in this assessment (numbered)

LO1, LO6

 

Marking guidelines

In addition, please consider the following points:

· It is important that you present your assignment at sufficient depth to demonstrate your attainment of the Intended Learning Outcomes (ILOs) for this module.

· You should expect to spend approximately 60 hours on this assignment (this includes time spent on information gathering, research etc. but is additional to the time spent during the taught week).

· Your assignment must be written in a technical/academic style.

· You should on a variety of high-quality references to demonstrate learning beyond the taught material.

· Specific references to the course notes, aside from the practical activity briefing sheets, is not permissible.

· The format of the presentation should be a single, concise document.

· Relevant diagrams and calculations should be included.

· The assignment will be assessed as a monochrome printout so diagrams and graphs should be labelled accordingly.

· An extensive quantity of data tables, spreadsheets or print-outs of models is not appropriate but could be described with concise examples to evidence their use.

· Sanitisation of the results, particularly from lengthy or complex calculations, is strongly encouraged.


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