At a Glance
- Tasks: Create and validate models for power electronic systems and their interactions.
- Company: Join a global leader in innovative power solutions.
- Benefits: Competitive pay, flexible benefits, 26 days leave, and career growth opportunities.
- Other info: Collaborative environment with a focus on innovation and creativity.
- Why this job: Make an impact in the future of power electronics and renewable energy.
- Qualifications: Degree in Electrical Engineering or related field; experience in dynamic system modelling.
The predicted salary is between 60000 - 80000 € per year.
The Power Electronic Systems Modelling Engineer will create, validate, and implement sophisticated models of power electronic systems, converter-based architectures, and their interactions with electrical machines and power networks. The role demands a comprehensive system-level understanding of operational environments, integrating multiple electric drive systems such as power converters, electric motors, dynamic loads, and their interplay within unified systems.
Responsibilities
- Design, implement, and validate control algorithms for system-level integration models of converter-based systems, incorporating machine dynamics and DC & AC grid behaviour to ensure optimum operation and analyze control interactions among multiple control algorithms.
- Conduct time-domain, frequency-domain, and stability analyses to assess performance of the system under various operational conditions.
- Develop digital twin models and real-time simulation frameworks to support hardware-in-the-loop (HIL) and software-in-the-loop (SIL) testing, aligned with defined test cases to evaluate system performance under representative operating conditions.
- Evaluate the influence of converter topology, modulation techniques, and control architectures on system-level performance.
- Conduct grid integration studies for converter-dominated systems, including fault ride-through, system strength, and power quality assessments.
- Collaborate with cross-functional teams in power electronics design, control, and system integration to ensure alignment between model assumptions and physical implementations.
- Develop methodologies to predict and mitigate interaction effects between multiple converters and grid components on AC & DC grids for marine power systems applications.
- Support model validation through comparison with experimental and field test data.
- Document modelling procedures, assumptions, and validation results to ensure traceability and knowledge transfer.
- Contribute to technical reports, publications, and design reviews to support internal R&D and customer projects.
- Stay current with emerging modelling methodologies, tools, and standards for converter-based power systems.
Qualifications (Essential)
- Degree (BEng, MEng or PhD) in Electrical Engineering, Power Systems, Control Engineering, or a related discipline.
- Strong theoretical and practical understanding of power electronics converters, control systems, and electrical machines.
- Proven experience in dynamic system modelling and simulation of converter-based power systems.
- Expertise with modelling and simulation tools such as MATLAB/Simulink, PLECS, Ansys Twin Builder, PSCAD, DIgSILENT PowerFactory, or Modelica.
- Understanding of control design, signal processing, and system stability theory.
- Knowledge of grid integration challenges in renewable or converter-dominated networks (wind, solar, HVDC, microgrids).
Desirable Skills
- Experience with real-time simulation platforms (OPAL-RT, Typhoon HIL, RTDS).
- Familiarity with EMT, RMS, and hybrid simulation techniques for multi-timescale studies.
- Experience in harmonic analysis, electromagnetic transient analysis, or EMC/EMI modelling.
- Background in co-simulation frameworks combining electrical, thermal, and mechanical domains.
- Strong programming and scripting skills (MATLAB, Python, C/C++, Modelica, or VHDL-AMS).
Other Competencies
- Team-working attitude: exhibits strong collaboration, respectful communication, and prioritises team success.
- Communication and leadership skills: strong stakeholder management and presentation abilities.
- Analytical and problem-solving mindset with a passion for technical innovation.
- Report writing skills: clear and concise written communication tailored to the audience.
- Organisational skills: manages time effectively, monitors performance against deadlines, and works productively under pressure.
- Ethics and integrity: upholds professional ethics in all actions.
- Willingness to travel within the UK and overseas for short-term assignments.
- Security clearance: able to obtain UK security clearance.
Benefits
- Competitive compensation package.
- Flexible benefits package including employer pension contribution, income protection, private health insurance, and life assurance.
- 26 days annual leave plus bank holidays.
- Opportunities for professional growth and career advancement within a global company.
- Diverse and collaborative work environment focused on innovation and creativity.
Lead Power Electronic Systems Modelling Engineer in Kilsby employer: GE Vernova
As a Lead Power Electronic Systems Modelling Engineer, you will thrive in a dynamic and innovative environment that prioritises collaboration and professional growth. Our company offers a competitive compensation package, flexible benefits, and 26 days of annual leave, ensuring a healthy work-life balance while fostering your career advancement within a global network. Join us to be part of a diverse team dedicated to pushing the boundaries of power electronics and system integration.
StudySmarter Expert Advice🤫
We think this is how you could land Lead Power Electronic Systems Modelling Engineer in Kilsby
✨Tip Number 1
Network like a pro! Reach out to folks in the industry through LinkedIn or local meetups. You never know who might have the inside scoop on job openings or can put in a good word for you.
✨Tip Number 2
Show off your skills! Create a portfolio showcasing your projects, especially those related to power electronics and system modelling. This will give potential employers a taste of what you can do beyond your CV.
✨Tip Number 3
Prepare for interviews by brushing up on common technical questions related to power systems and control algorithms. Practise explaining complex concepts in simple terms – it shows you really understand your stuff!
✨Tip Number 4
Don’t forget to apply through our website! It’s the best way to ensure your application gets seen. Plus, we love seeing candidates who are proactive about their job search.
We think you need these skills to ace Lead Power Electronic Systems Modelling Engineer in Kilsby
Some tips for your application 🫡
Tailor Your CV:Make sure your CV reflects the skills and experiences that match the job description. Highlight your expertise in power electronics, control systems, and any relevant modelling tools like MATLAB/Simulink. We want to see how you fit into our team!
Craft a Compelling Cover Letter:Your cover letter is your chance to shine! Use it to explain why you're passionate about power electronic systems and how your background makes you the perfect fit for this role. Let us know what excites you about working with us at StudySmarter.
Showcase Your Projects:If you've worked on any relevant projects, whether academic or professional, make sure to mention them! Describe your role, the challenges you faced, and the outcomes. This helps us understand your hands-on experience and problem-solving skills.
Apply Through Our Website:We encourage you to apply directly through our website. It’s the best way to ensure your application gets to the right people. Plus, it shows us you’re serious about joining our innovative team at StudySmarter!
How to prepare for a job interview at GE Vernova
✨Know Your Models Inside Out
Make sure you’re well-versed in the modelling tools mentioned in the job description, like MATLAB/Simulink and PLECS. Be ready to discuss your past experiences with these tools and how you've applied them to create and validate models of power electronic systems.
✨Understand System-Level Integration
Brush up on your knowledge of system-level integration of converter-based systems. Be prepared to explain how you would approach designing control algorithms and conducting stability analyses, as this will show your comprehensive understanding of operational environments.
✨Showcase Your Teamwork Skills
Since collaboration is key in this role, think of examples where you’ve successfully worked in cross-functional teams. Highlight your communication skills and how you’ve managed stakeholder expectations in previous projects.
✨Stay Current with Trends
Demonstrate your passion for the field by discussing recent advancements in modelling methodologies or tools. This shows that you’re not just knowledgeable but also eager to stay ahead in the industry, which is a big plus for any employer.