CDR Sample for Computer Network and Systems Engineer

COMPUTER NETWORK AND SYSTEMS ENGINEER ANZSCO 233211

CDR Sample for Computer Network and Systems Engineer

CDR Sample for Computer Network and Systems Engineer

Computer network and systems engineers primarily assist in the planning, implementation, testing, and optimization of network and system services, responsible for configuration management and preparation of the overall network system operation, especially for environments with many operating systems and configurations, and provide troubleshooting and network problems Troubleshooting service. A minimum bachelor’s degree or higher is required.

Australia is looking for qualified individuals in a wide range of fields to help boost its industries around the country. Therefore, competent professionals can get a plethora of chances as well as top average wages in Australia.

The CDR sample for computer network and systems engineers includes all required reports such as CV, continuing professional development, career episodes, and a summary statement. CDR samples for migration skills assessment provided by CDRAustraliaHelp are all approved by Engineers Australia. We have a professional team of writers to prepare your CDR report in the best way. The sample content of the CDR report is as follows:

Curriculum Vitae (CV)

Resume on the basis of a professional template.

Continuing Professional Development (CPD)

The sample of CPD clarifies the Engineering Knowledge of the applicant – 350 words.

Computer Network and Systems Engineer Career Episode Sample 1

“Peer-to-peer Data Integration Based on Schema” – 2220 words

Computer Network and Systems Engineer Career Episode Sample 2

“Simulation Versus Coding” – 2900 words

Computer Network and Systems Engineer Career Episode Sample 3

“Extension to MAC 802.11 for Performance Enhancement in MANET” – 2150 words

Computer Network and Systems Engineer Summary Statement Sample

Detailed explanation of all the competency elements – 2000 words.

Computer Network and Systems Engineer Career Episode Sample 1

Project Name: Peer-to-peer Data Integration Based on Schema

In the first Career Episode, the author describes the project titled as “Peer-to-peer Data Integration Based on Schema” in which he involved in as a partial fulfillment of the requirements of his Bachelor’s Degree. The responsibilities of the author were:

  • Provide a formal framework to develop and analyze models of such systems.
  • Analyze how to respond to models provided to various protocols.
  • Explains the implementation of the API, which uses the AutoMed infrastructure to provide the ability to build systems of this nature.
  • Extend AutoMed API to support P2PDI.
  • Describes the working system using API.

Computer Network and Systems Engineer Career Episode Sample 2

Project Name: Simulation versus Coding

In the second Career Episode, the author demonstrates the programming skills he used during his involvement in the project entitled “Simulation Versus Coding” and his major responsibilities were:

  • To interpret the routes created by a certain routing protocol.
  • To understand and denote the implications of the routing table convergence.
  • To code a program that simulates a routing protocol using OPNET Modeler.
  • To make a comparison on the round-trip packet delay time for both TCP and UDP protocols.
  • To analyze the convergence time of the routing protocol.

Computer Network and Systems Engineer Career Episode Sample 3

Project Name: Extension to MAC 802.11 for Performance Enhancement in MANET

In the third Career Episode, the author explains the project he carried out when he was a Master’s student. The project was entitled “Extension to MAC 802.11 for Performance Enhancement in MANET” and his key responsibilities were:

  • Use the ns-2 network simulator to improve performance and reduce routing overhead on mobile devices such as a hoc network.
  • The communication between the 802.11 MAC protocol and the DSR (Dynamic Source Routing) protocol was improved.
  • Use Request-for-request-to-send (RRTS) packets to get synchronization.
  • Implements a method of tracking the signal received from each neighboring node.
  • Uses two transport protocols, TCP and UDP, to perform various simulations in static and mobile scenarios to check the adaptability of the proposed method to various contexts.

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