Bachelor of Engineering Technology Renewable Energy
Designed for students who want a hands-on career in clean power, this three-year degree explores solar, wind, energy storage, and power systems.
You’ll build strong engineering fundamentals, learn to implement and manage renewable energy solutions, and develop workplace-ready skills through applied projects and Work-Integrated Learning (WIL).
With Australia targeting net-zero emissions by 2050, graduates are positioned for growing opportunities across renewable generation, grids, and energy management.


Study Mode
On Campus
Course Duration
3 years
Next Intake
Feb & July 2027

Location
Adelaide (SA)
Course Snapshot and Official Registration
This three-year, on-campus bachelor degree builds the academic and practical foundation for renewable energy engineering technologist roles, delivered by a TEQSA-registered higher education provider and a CRICOS-approved institute.
- Course Duration: 3 years (six semesters full-time)
- Course Level: AQF 7
- Accreditation Status: Approved by TEQSA
- TEQSA Provider ID: PRV14379
- CRICOS Provider Code: 04229B
- Course ID (CRICOS Course Code): 115314D




Become Industry-Ready
with Real Project Skills.


Why Choose Renewable Energy at Imperial Engineering Education?
Renewable technologies are accelerating as the world cuts reliance on fossil fuels and energy demand rises.
This degree prepares you for engineering technologist roles with industry-relevant skills, aligned to Engineers Australia graduate competencies.
You’ll learn through practical labs, applied projects, and Work-Integrated Learning backed by renewable energy industry partnerships.
You graduate ready to apply science and engineering fundamentals to solar, wind, storage, and grid-focused challenges.
Admissions
Entry Requirements
To be eligible, you must meet one of the following entry pathways, plus the mathematics requirement:
Successful completion of Australian Standard Year 12 (or equivalent) with a minimum ATAR of 60 (or equivalent), or
Satisfactory completion of an accredited Tertiary Preparation Program, Tertiary Orientation Program, or Foundation Year Program offered by an Australian university or another accredited institution that enables entry to an Australian university
Mathematics requirement (required for all applicants):
Australian Standard Year 12 (or equivalent) Mathematical Methods
Health Requirements
There are no specific health requirements for this course. If you have a health condition or require study support, please note this in your application form. An IEE staff member will contact you to discuss suitable assistance and available support options.
English Requirements
Applicants must meet English language requirements, in addition to the academic entry requirements above. You can satisfy English proficiency through one of the following:
Academic IELTS: Overall 6.0 with no band below 5.5
TOEFL iBT: Overall 60–78, with minimum scores of 12 (Reading), 20 (Writing), 11 (Listening), and 17 (Speaking)
Pearson (PTE Academic): Overall 50, with no score below 45 in each component
Cambridge English (CAE): Overall 169, with no score below 162 in each band
Course Details
Unit Prerequisites and Co-requisites
Prerequisites and co-requisites are listed in each unit outline. If a unit has a prerequisite, you must successfully complete the earlier unit before enrolling. If a unit has a co-requisite, you must either have already completed it or be enrolled in it at the same time.
Bachelor of Engineering Technology (Renewable Energy) Course Structure
This program includes core engineering foundations, engineering practice projects, renewable energy specialisation units, and one elective. To be eligible to graduate, students must complete a total of 240 credit points.
Core Units (Credit Value)
- MTH100 Engineering Mathematics 1 (10)
- MTH110 Engineering Mathematics 2 (10)
- PHY100 Engineering Physics: Mechanics (10)
- PHY110 Engineering Physics: Electromagnetism (10)
- EIT100 Programming for Engineers (10)
- ENG100 Introduction to Engineering Technology (10)
- ENG210 Engineering Materials (10)
- ENG220 Embedded Systems (10)
- ENG230 Transducers, Sensors, Actuators and Control (10)
- ENG240 Artificial Intelligence and Virtual Reality Systems (10)
- ENP100 Engineering Practice 1: Technology in a Social Context Project (10)
- ENP110 Engineering Practice 2: CAD and 3D Printing Project (10)
- ENP200 Engineering Practice 3: Sustainability Project (10)
- ENP220 Engineering Practice 4: Project Management Finance and Org Structures (10)
- ENP300 Engineering Practice 5: Industry Project (20)
- ENP315 Engineering Practice 6: Industry Capstone Project (Renewable Energy) (20)
Discipline Specialisation Core (Renewable Energy) (Credit Value)
- REE200 Renewable Energy Technology (10)
- REE210 Power Electronics and Storage Technologies (10)
- REE300 Power Systems and Renewable Energy (10)
- REE310 Control of Power Systems (10)
- REE320 Smart Grid and Energy Management Systems (10)
Electives (Choose 1) (Credit Value)
Credit Transfer and Recognition of Prior Learning
You may be eligible for credit if you have completed relevant prior learning, including formal, non-formal, or informal learning. Details on eligibility and how to apply are outlined in the Institute’s Credit and Recognition of Prior Learning Policy and Procedure available on the Institute website.
Fee
Tuition Fees (in Australian Dollars)
Per unit (for 10 CP units) — $3,300.00.
Per unit (for 20 CP units) — $6,600.00
Total for the course (inclusive of Application Fee) — $79,700.00


Careers in Renewable Energy Technology
Graduates can pursue roles across renewable generation, power systems, solar, storage, microgrids, and electrified transport. Career pathways span technical delivery, project coordination, analysis, and consulting within organisations supporting the transition to sustainable energy.
- Renewable energy project designer or manager
- Renewable energy power generation engineering (hydro, wind, biomass)
- Grid connection engineering technologist
- Power systems engineering technologist
- Process engineering technologists and analyst
- Electrified transportation engineering technologist
- Solar PV engineering technologist
- Renewable energy modeller/analyst
- Microgrid, electric mobility and battery storage engineering technologist
- Renewable energy entrepreneur
- Renewable energy accountant, auditor, innovator or consultant




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Imperial Engineering Education is a fantastic institution for engineering studies in Adelaide. They offer Industry-relevant programs, and has a supportive learning environment. They have recently launched a Master of Engineering Management, which is a great addition to their already strong lineup of engineering degrees. Highly recommend for anyone looking to build a career in advanced manufacturing, renewable energy, or engineering managementPosted on Google![]()
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