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CDR Sample for Electrical Engineering Technicians

CDR Sample for Electrical Engineering Technician

You can get 100% genuine CDR Sample for Electrical Engineering Technicians written by our professional and skilled engineering writers. The samples we provide are the report which have already been submitted and positively assessed by the Engineers Australia for Skilled Migration Visa. Please use the sample for reference purpose only and do not copy and paste from the sample.

CDR Report Sample: Electrical Engineering Technicians ANZSCO Code: 312312

Electrical Engineering Technicians play a vital role in translating designs and technical instructions electrical engineers provide into practical implementations. They are responsible for ensuring the precise execution of these instructions. Additionally, they contribute to developing, installing, testing, and maintaining equipment used for power generation, transmission, and utilization. Individuals must have a formal electrical engineering technology qualification to pursue an Electrical Engineering Technician career. Our CDR (Competency Demonstration Report) sample for Electrical Engineering Technicians includes essential components, such as a Curriculum Vitae (CV), Continuing Professional Development (CPD), three Career Episodes (CE), and a Summary Statement. Below, you’ll find an overview of the contents of the CDR Report Samples:
    • Curriculum Vitae: Resume based on a professional template.
    • Continuing Professional Development Sample: CPD Sample clearly explains the author’s Engineering Knowledge- 500 words.
    • Career Episode Sample 1 for Electrical Engineering Technician Project  Electrical:Title: “Optimal Allocation of Static and Dynamic Reactive Power Support for Enhancing Power System Security” (Word Count:2150)
    • Career Episode Sample 2 for Electrical Engineering Technician Project: Title: “Assessing Microwave Microscopy for Dielectric Characterization” (Word Count: 2150)
    • Career Episode Sample 3 for Electrical Engineering Technician Project: Title: “Incorporating Plug-In Electric Vehicles into the Electrical Power Grid” (Word Count: 2070)
    • Electrical Engineering Technician Summary Statement Sample: Detail explanation of all the competency elements- 1500 words.

Career Episode Sample 1 for Electrical Engineering Technician Project

Project Name: Optimal Allocation of Static and Dynamic Reactive Power Support for Enhancing Power System Security

In the first Career Episode, the author recounts their experience as a team leader during their Bachelor’s Degree. They worked on the project named “Optimal Allocation of Static and Dynamic Reactive Power Support for Enhancing Power System Security” with the following responsibilities:

  • Identifying voltage-related issues.
  • Developing a technique to pinpoint vulnerable areas in the power network.
  • Creating a simplified method for locating optimal reactive power support.
  • Allocating static and dynamic VAR sources efficiently for power system stability during contingencies.

Career Episode Sample 2 for Electrical Engineering Technician Project

Project Name: Assessing Microwave Microscopy for Dielectric Characterization

In the second Career Episode, the author discusses their involvement in the project named “Assessing Microwave Microscopy for Dielectric Characterization.” This project was undertaken while they were pursuing their PhD at the University of Birmingham. Their primary responsibilities in this project included the following:

  • Computing and deriving standard samples.
  • Carrying out the measurement process for dielectric samples.
  • Investigating the impact of the coupling coefficient.
  • Illustrating uncertainties in measuring the relative permittivity of bulk samples.
  • Demonstrating limitations of the extended image charge model when applied to thin films.

Career Episode Sample 3 for Electrical Engineering Technician Project

Project Name: Incorporating Plug-In Electric Vehicles into the Electrical Power Grid

In the third Career Episode, the author highlights their involvement in the project aimed at “Incorporating Plug-In Electric Vehicles into the Electrical Power Grid” during their university studies. Their responsibilities in this project were as follows:

  • Estimating the electricity consumption of a fleet of light Plug-In Electric Vehicles (PEVs).
  • Researching power electronic topologies for two-way vehicle-to-grid and grid-to-vehicle power transfer.
  • Analyzing the impact of PEVs on the distribution system under aggregator control.
  • Investigating electricity pricing strategies used by PHEV aggregators and how this impact decision-making for cost-conscious PHEV owners.
  • Creating a model for light-duty PEVs for long-term energy and transportation planning at the national level.

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