可持续多部门电气化使用高级集成电机驱动技术的博士生职位
PhD Studentship - Sustainable Multi-Sector Electrification Using Advanced Integrated Motor Drive Technologies
原帖优先:申请材料、截止时间与资格以原帖和学校官方说明为准。
AI 中文速览
- 研究内容
- 研究目标是开发创新技术解决方案,减少能量损失和环境影响,研究领域包括机械集成、热管理、电磁管理和高级控制和建模。
- 申请条件
- 本科或硕士学位,相关工程或物理科学领域,强分析和数学能力,良好的演讲和写作能力。
- 待遇
- 原文未说明
- 申请方式
- 请将申请材料发送至 liliana.delillo@nottingham.ac.uk,包括求职信、简历、成绩单等。
- 材料清单
- 求职信
- 简历
- 成绩单
由 @cf/meta/llama-3.3-70b-instruct-fp8-fast 生成,博士岗判定置信度 90%。
结构化信息
- 截止
- (Europe/London) 剩 67 天
- 学科
- 材料科学
- 合同类型
- 雇佣合同
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- 内容更新
- 来源
- jobs.ac.uk(英国博士项目及学术招聘) · 最近核对 2026-10-07
判定依据(原文摘录)
- is_phd
PhD Studentship
- english_ok
excellent presentation, communication, and scientific writing skills
- bachelor_ok
A Bachelor degree (2:1 or above) or a Master's degree
原文
Electric motors and the systems they drive consume half of global electricity. These systems are typically very inefficient and contribute to a significant amount of energy wasted. By physically integrating power electronic converters and electrical machines we can use common structures and systems to greatly reduce, material usage and energy consumption.
Through a multidisciplinary research approach the aim is to establish fully integrated motor drives as a key enabling technology for sustainable electricity generation, high-efficiency industrial systems, lightweight transport applications, and significant reductions in manufacturing-related CO₂ emissions. The ambition is to develop innovative technological solutions that reduce energy losses and minimise environmental impact throughout the product life cycle by:
• Reducing material usage during manufacture.
• Improving electrical system efficiency and power-to-weight ratios during operation.
• Enhancing recyclability and resource recovery at end of life.
Projects are available to address one or more of the following scientific challenges:
1. Mechanical Integration
Structural and functional integration requires the development of novel joining technologies, motor winding arrangements, and 3D-printed structures capable of mounting semiconductor devices within the motor architecture.
2. Thermal Management
The harsh thermal environment within integrated motor drives demands innovative design and manufacturing solutions. Advanced additive manufacturing techniques will be explored to improve thermal management across the entire system.
3. Electromagnetic Management
The use of wide-bandgap semiconductor devices can significantly reduce the size of passive components within power electronic converters. However, their high switching speeds can introduce challenges related to electromagnetic interference (EMI) and motor winding degradation. Novel converter topologies, EMI mitigation strategies, and advanced winding technologies will therefore be investigated.
4. Advanced Control and Modelling
Multi-modular distributed motor-drive architectures and ultra-fast semiconductor devices present significant control challenges. Research may involve FPGA-based control platforms, advanced microcontrollers, distributed control algorithms, and artificial intelligence techniques, including neural networks and evolutionary optimisation methods, to enable the efficient operation of integrated converter-motor systems.
Research environment
Applications are invited to join the Power Electronics, Machines and Control (PEMC) Research Group at the University of Nottingham. Based within a recently established £18 million research facility on Jubilee Campus, PEMC is internationally recognised as a leading centre for research in power electronics, electrical machines, and control engineering.
Entry requirements
Applicants should possess:
• A Bachelor degree (2:1 or above) or a Master's degree (MSc, MEng, MPhys, MRes, or equivalent) in a relevant engineering or physical sciences discipline such as electrical and electronic engineering, mechatronics, physics, materials science, mechanical engineering, aerospace engineering, or a closely related subject.
• A strong background or relevant experience in electrical machines, power electronics, control systems, thermal management, or related fields (desirable).
• Experience using simulation software such as COMSOL Multiphysics, MATLAB, and/or Ansys.
• Programming, coding, and experimental hardware skills (desirable).
• Strong analytical and mathematical capabilities.
• A passion for research and a willingness to learn.
• Excellent presentation, communication, and scientific writing skills.
Application process
To apply, please email the following documents to liliana.delillo@nottingham.ac.uk :
• A cover letter outlining your motivation for applying to this project.
• A curriculum vitae (CV) detailing your academic background, research experience, and relevant technical skills.
• Academic transcripts from all qualifying degree programmes.
Shortlisted candidates will be invited to interview. The successful applicant must subsequently complete a formal online application through the University of Nottingham admissions portal.
Eligibility
Due to funding restrictions, this studentship is available only to UK applicants.