FPeT: Framework for designing piezoelectric transformer power supplies
FPeT: Framework for designing piezoelectric transformer power supplies
批准号:
EP/P015859/1
负责人:
Martin Foster
金额:
$76.91万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2017
资助国家:
英国
项目状态:
已结题
起止时间:
2017 至 --
中文摘要
大多数电气设备需要电源,该电源通常包含磁性Transformer以提供安全隔离并升高或降低输入电压。压电变压器(PT)为传统变压器提供了一种令人兴奋的替代方案,特别是在要求高功率密度、低电磁干扰和高温运行的应用中。然而,它们的广泛采用受到了阻碍,因为电源设计人员需要拥有材料科学和电力电子方面的知识和培训,这些知识在工业甚至学术界都很少见。这种缺乏知识的基础代表了一个真实的障碍电源制造商谁可能希望采用PT技术,因此PT只看到边际市场penetrations.The项目解决了这些问题,通过产生一个多物理设计框架,提供了抽象的基础科学,因此允许设计工程师专注于整体系统设计。该框架通过一系列基于电路和材料的转换,将高级电源规范转换为PT电源解决方案。优化过程(使用进化计算和有限元分析)产生完全特征化的最终设计。该过程的输出包括压电Transformer的电路设计和“配方”,包括以适合制造的格式呈现的材料和构造细节。该框架将封装在一个用户友好的软件设计工具中,并根据项目工业合作伙伴建议的实际电源应用进行验证,从而确保研究的相关性。该研究将超越电气工程和材料科学之间的传统障碍,拥有一个在这两个领域都具有专业知识的解释团队。除了开发框架外,该研究还将开发特别适合高温操作的新型压电材料,在航空航天、石油/天然气勘探、电动汽车和恶劣环境下的远程监控等许多应用领域都有希望。此外,通过开发符合2016年有害物质限制的新材料,将减少对环境有害的铅基PT的需求。该研究计划将在一个开放式研讨会上达到高潮,行业和学术研究人员可以在研讨会上了解PT电源并自行评估设计工具。为了确保研究保持工业相关性,我们与几家领先的公司合作,他们将提供专业知识和商业驱动,作为回报,他们将获得准备商业化的概念验证电源。
英文摘要
Most electrical equipment requires a power supply which usually incorporates a magnetic transformer to provide safety isolation and to step up or step down the input voltage. Piezoelectric transformers (PTs) offer an exciting alternative to conventional transformers particularly in applications requiring high power density, low electromagnetic interference and high temperature operation. Their widespread adoption is hindered, however, by the need for power supply designers to possess knowledge and training in both materials science and power electronics, combined expertise that is rarely found in industry or even academia. This lacking knowledge base represents a real impediment for power supply manufacturers who may wish to adopt PT technology and consequently PTs have only seen marginal market penetration.The project addresses these issues by producing a multi-physics design framework which provides abstraction from the fundamental science and therefore allows the design engineer to focus on the overall system design. The framework converts a high-level power supply specification into a PT power supply solution through a series of circuit and materials based transformations. An optimisation process (using evolutionary computing and finite element analysis) produces a fully characterised final design. The output of this process includes a circuit design and a "recipe" for the piezoelectric transformer, including materials and construction details presented in a format suitable for manufacture. The framework will be encapsulated in a user-friendly software design tool and validated against real-world power supply applications suggested by the project's industrial partners thereby ensuring the relevance of the research.The research, which will transcend the traditional barriers between electrical engineering and materials science, has an investigatory team with expertise in both areas. As well as developing a framework, the research will develop novel piezoelectric materials particularly suited to high temperature operation, finding promise in a number of application areas including aerospace, oil/gas exploration, electric vehicles and for remote monitoring in harsh environments. Additionally, the need for environmentally damaging lead-based PTs will be diminished through the development of new materials which comply with Restriction on Hazardous Substances 2016.The research programme will culminate in an open workshop where industry and academic researchers can learn about PT power supplies and evaluate the design tool for themselves. To ensure that the research remains industrially relevant we have partnered with several leading companies who will provide expertise and commercial drive and in return they will receive proof-of-concept power supplies ready for commercialisation.
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Performance of PZT-based piezoelectric transformers for use in high-temperature converters
用于高温转换器的 PZT 压电变压器的性能
DOI:
10.1049/icp.2022.1012
发表时间:
2022
期刊:
影响因子:
--
作者:
[Forrester J]
通讯作者:
Forrester J
Comparison of BSPT and PZT Piezoelectric Ceramic Transformers for High-Temperature Power Supplies
高温电源用 BSPT 和 PZT 压电陶瓷变压器的比较
DOI:
10.1002/adem.202200513
发表时间:
2022
期刊:
Advanced Engineering Materials
影响因子:
3.6
作者:
[Forrester J]
通讯作者:
Forrester J
DOI:
10.1109/tie.2021.3116574
发表时间:
2021
期刊:
IEEE Transactions on Industrial Electronics
影响因子:
7.7
作者:
[Sajad A. Ansari;J. Davidson;M. Foster]
通讯作者:
Sajad A. Ansari;J. Davidson;M. Foster
Automated design tools for piezoelectric transformer-based power supplies
用于基于压电变压器的电源的自动化设计工具
DOI:
10.1049/joe.2018.8065
发表时间:
2019
期刊:
The Journal of Engineering
影响因子:
--
作者:
[Forrester J]
通讯作者:
Forrester J
Design and Analysis of a Fully-integrated Planar Transformer for LCLC Resonant Converters
用于 LCLC 谐振转换器的全集成平面变压器的设计与分析
DOI:
10.23919/epe21ecceeurope50061.2021.9570666
发表时间:
2021
期刊:
影响因子:
--
作者:
[Ansari S]
通讯作者:
Ansari S
共 10 条
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