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CDR Report Sample For Biomedical Engineer – ANZSCO CODE: 233913

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The Competency Demonstration Report Sample for Biomedical Engineer consists of three career episodes: summary statement and continuous professional development. This Biomedical Engineer CDR Report Sample summary is as follows.

Biomedical Engineer Career Episode Report 1

Project Name: “Design and development of a fall detection system”

The author describes the project in the first career episode, which he did when he was a university student undertaking a Bachelor of Biomedical Engineering. The project title was the design and development of a fall detection system where worked out below tasks.

Research the existing fall detection techniques through a literature survey and identify the current systems’ limitations and issues.

Design the entire fall detection system and develop block diagrams to show its components and working.

Determine the electrical components and circuits to be used to implement the fall detection system in hardware.

Assemble the electrical components and fabricate them on circuit boards by soldering them.

Program the microcontroller unit to process the input signals from the tilt sensors and send emergency messages when fatal falls occur.

Test the working of the prototype developed and validates the tilt sensor’s performance to detect falls.

Prepare project reports and submit them along with the department’s prototype for the final evaluation of the project.

Biomedical Engineer Career Episode Report 2

Project Name: “Developing a spirometer prototype”

The second career episode elaborates on the author’s project when he was a Master of Medical Engineering at university. The roles and tasks of the author were not limited to the listed below.

Design and build the prototype for a basic spirometer that could measure the volume of air inhaled and exhaled.

Apply knowledge in fields such as electrical engineering to determine the components and circuits required in the project.

Design the necessary filters to facilitate conditioning and amplification of the measured lung capacity data.

Program an Arduino microcontroller to collect the study’s essential data, such as mass and volumetric flow and total volume over time for testing the prototype device.

Make comparisons between the expected output and the obtained output in the Arduino serial monitor.

Plot a graph of volume against time and compute the FEV1/FVC ratio to detect lung disorders.

Carry out a risk assessment of the project to determine hazards likely to be encountered while working on the project and devise appropriate control measures.

Biomedical Engineer Career Episode Report 3

Project Name: “Improving the ECMO cannula design project”

The third career episode gives the author Biomedical engineering experiences in a project done while doing a Masters of medical Engineering, where I leveraged on CAD tools and simulations in ANSYS software to reduce thrombogenesis. Below is the detailed roles handled by the author;

Perform SWOT and PESTEL analysis to identify the need and issues to be addressed by the project and develop the project objective.

Review available forms of literature to obtain new design ideas and familiarize me with available moulding methods.

Sketch the existing cannula model and create a 3D model using a CAD tool.

Formulate a mathematical model to show the relationship between the parameters that affect cannula performance to analyse its system.

Optimize both the cannula’s tip geometry and alter the side holes’ placement and develop several optimized models for analysis.

Create the cannula prototype and construct the test rig and the blood substitute for conducting the tests.

Perform tests on the cannula for flow characteristics and compare the CFD values with those from the literature review.

 Biomedical Engineer Summary Statement

The author of this summary statement presented the entire competency element necessary for the assessment as Professional Biomedical Engineer by Engineers Australia. The summary statement has been referenced to the relevant areas of career episodes recommended by the Engineers Australia migration skills assessment booklet. This summary statement meets the requirements for engineers Australia assessment.

Biomedical Engineer Continuing Professional Development

The CPD items mentioned include training (professional and non-professional courses), private studies, seminars, conferences, and membership to professional bodies. The other activities include workshops attended, research book reading, among others. The CPD clearly explains the Author’s relevant activities in Biomedical Engineering.

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