The designing, developing, testing, and research methods for the manufacturing and installing of electrical components, equipment, or systems designated for commercial, military, scientific, and industrial use. The engineer of electrical systems gives smart software and hardware solutions for the systems in renewable energy, agriculture, mining, manufacturing, treatment of water, and other distributive works. The field of engineering includes classes on fundamental concepts of engineering. It is a professional planned, course in such a way that students take up jobs in the department of engineering once the diploma is earned. Many students face difficulties in getting admission to a Bachelor of Engineering. In engineering the diploma course which is involved consists of different classes on conceptual knowledge. Engineering is a part of an academic curriculum in many colleges and universities that combines scientific and technological aspects of computing. Engineering informatics is explained by the term CSE quite often in Europe. The programs in the Academic curriculum differentiate between colleges. The courses combine the introduction part to programming, data structures, algorithms, networks, OS, embedded systems, analysis of circuits and logistics, etc. It also includes core subjects like theory of computation, machine learning, deep learning, numerical methods, and paradigms. The modern curriculum includes emerging fields such as data science, artificial intelligence, robotics, image processing, bioinformatics, etc. Mathematical knowledge is mandatorily required in many of the cases above. The textbooks provide the basics of designing methods from the selection process of the optimum system and equipment to the preparation of drawings and specifications. It discusses the major four phases of preparing a project that is a collection of information, developing other alternative options, evaluating the alternative options, and selling out the best result. To add to this, the author breaks down the roles and responsibilities of the engineer, government codes, computer-based designs, documents design, and standards.
We are offering students with the concepts and strategies on Advanced Diploma of Electrical Systems Engineering and introduces you with the regulatory framework which includes the process of creating execution plans and how it is communicated. We will take you through practical knowledge and skills which are important for strategic analysis and implementing plans for better management. We will develop an understanding of the different techniques involved in creating these plans and types of analysis and reporting. The units provided in the course will make you understand the basic concepts related to project management and how it is implemented and run, what are the acts and regulations behind it.
The qualification takes up all the competencies for the development, validating, designing, maintaining, selecting, and diagnosing of malfunctioning of advanced equipment and systems in electrical engineering. It gives skills for the management of risk and estimation of projects and other technical advice and sales. Other competencies are developed in the ethical application of subjects like mathematics, standards, and codes of practices, designing practices, management techniques, etc. The given course covers all the management and assessment part of the risk which is associated with hazardous design, areas and evaluate the explosion potency and protection aspects of the instrument and electrical systems, providing with explosion-protection technical advice and installations related to protection from explosions. There is no legislation, licensing, or certification needed for the application to this course during the time of publication.
Type of Units |
Points/Credits |
Core Units |
840 |
Elective Units |
580 |
Core Units
Unit code |
Description |
Points |
UEECD0004 |
Application of material science for solving electrotechnology related problems |
60 |
UEECD0003 |
Application of community and industry standards for the activities taking place during the engineering |
20 |
UEECD0010 |
Production and compilation of an energy sector report in detail |
60 |
UEECD0005 |
Application of subjects’ knowledge such as physics to solve problems related to electrotechnology engineering |
60 |
UEECD0017 |
Following and establishing a developmental plan in an electrotechnology engineering domain |
120 |
UEECD0014 |
Development of design descriptions for electrotechnology related projects |
40 |
UEECD0026 |
Management of risk in electrotechnology related programs |
60 |
UEECD0024 |
Monitoring and implementation of energy sector Work health and safety procedures and policies |
20 |
UEECD0039 |
Providing solutions to basic engineering queries |
60 |
UEECD0036 |
Engineering consisting solutions to problems in complex path circuits |
60 |
UEECS0033 |
Application engineering software on personal systems |
40 |
UEECD0059 |
Specifications consisting of reports for electrical engineering projects |
40 |
UEECD0056 |
Application of different methodologies to maintain the currency |
20 |
UEERE0013 |
Development of strategies to address the sustainability and environmental issues in the electrical field |
20 |
UEEEL0015 |
Management of projects related to the electrical field |
40 |
UEEEL0062 |
Providing solutions to the queries raised |
60 |
UEEEL0058 |
Planning of bigger electrical projects |
60 |
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