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Miniaturised active radio frequency metamaterial circuits - MACRAME

Miniaturised active radio frequency metamaterial circuits - MACRAME
小型化有源射频超材料电路 - MACRAME
批准号:
252229703
负责人:
Professor Dr. Matthias Hein
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2014
资助国家:
德国
项目状态:
已结题
起止时间:
2013-12-31 至 2017-12-31

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中文摘要
翻译
DFG-RFBR联合研究提案MACRME的目的是为传统方法所缺乏的RF电路和系统发明、研究和建立新的设计准则。本项目致力于一维超材料的概念、理论和实验研究,采用有源正(传统)和负(非福斯特)电容和电感成分,基于这种方法,设计和实现由分布式放大和选择元件组成的新型微型多频带或超宽带滤波器和振荡器。由于它们的有源特性,这些器件还可以被设计成电子可调谐或可重构的。实现这些特性填补了目前电路技术中的空白。应用是多方面的,涉及未来无线系统在移动的和卫星通信、生物医学诊断、传感、自动化和安全问题中的应用。MACRIME符合德国联邦共和国和俄罗斯联邦政府之间的研究合作。通过MACRIME,伊尔梅瑙和彼得堡的两所大学希望在协调一致的双边资助研究的基础上加强富有成效的合作,这些研究涉及专业知识的互补领域,部分由ETU的俄罗斯-德国工程学院负责。我们期望通过科学家交流、知识和思想传播产生显著的协同效应,从而提高出版物的质量和国际声誉。
英文摘要
The aim of the joint DFG-RFBR research proposal MACRAME is to invent, investigate, and establish new design guidelines for RF circuits and systems that are lacking in conventional approaches. The project isdevoted to pioneering conceptual, theoretical, and experimental research on one-dimensional metamaterials employing active positive (conventional) as well as negative (non-Foster) capacitive and inductive constituents.Based on such an approach, novel miniature multi-band or ultra-wideband filters and oscillators composed of distributed amplifying and selective elements shall be devised and implemented. Due to their active nature, these devices can in addition be designed electronically tuneable orreconfigurable. Achieving these properties fills a gap in present circuit technology. Applications are manifold and concern future wireless system applications in mobile and satellite communications, biomedical diagnostics, sensing, automation, and security issues.MACRAME complies with the research cooperation between the Governments of the Federal Republic of Germany and the Russian Federation. With MACRAME, the two universities in Ilmenau and St. Petersburg wish to intensify their fruitful co-operation on the basis of a coherently conducted bilaterally funded research, taylored to the complementary areas of expertise and partly covered by the Russian-German Engineering Faculty at ETU. We expect significant synergy effects through exchange of scientists, dissemination of knowledge and ideas, leading to enhanced quality publications and international reputation.
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会议论文
Stretchable Multilayer Printed Circuit Boards: Fabrication, Surface Mount Challenge, Fundamental Research, and Applications
Connection of functional blocks and RF system integration
Coordination Funds
RF frontend functional block
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