Collaborative Research: Methods for Detection and Visualization of Coupling Paths in EMC Problems

合作研究:EMC 问题中耦合路径的检测和可视化方法

基本信息

项目摘要

Center for Electromagnetic Compatibility (EMC) Proposal #1128748 Proposal #1127923 This proposal seeks funding for the Center for Electromagnetic Compatibility located at the Missouri University of Science and Technology and the University of Houston site, respectively. Requests for Fundamental Research are authorized by an NSF approved solicitation, NSF 10-601. The solicitation invites I/UCRCs to submit proposals for support of industry-defined fundamental research. This proposal will provide a novel insight into EMC coupling path physics, especially in complex geometries such as systems and printed circuit-boards. The project will provide solid theoretical and numerical basis for coupling path direction, which can open an entirely new solution strategy for EMC problems, thus transforming the practice of electromagnetic problem solving in EMC and provide the industrial consortium members with a practical and useful diagnostic and mitigation methodology. The availability of coupling path detection methods can drastically improve the understanding of complex EMC problems, enabling more functionality to be integrated into products as diverse as high-speed electronics, automobiles, or military hardware. The proposed project will help assure the relevancy of the research to industry and ensure that results will be integrated into the development of real products that make their way to the consumer. The center will gain the unique capability to visualize coupling paths; this will allow an increase in the scope of the center by addressing additional audiences.
电磁兼容性中心(EMC)提案#1127923本提案分别为位于密苏里科技大学和休斯顿大学网站的电磁兼容性中心寻求资金。基础研究请求由NSF批准的征求授权,NSF 10-601。本次招标邀请I/ ucrc提交支持行业定义基础研究的提案。该提案将为电磁兼容耦合路径物理提供新的见解,特别是在复杂的几何形状中,如系统和印刷电路板。该项目将为耦合路径方向提供坚实的理论和数值基础,为电磁兼容问题开辟一种全新的解决策略,从而改变电磁兼容中电磁问题解决的做法,并为工业联盟成员提供一种实用和有用的诊断和缓解方法。耦合路径检测方法的可用性可以极大地提高对复杂EMC问题的理解,使更多的功能能够集成到各种产品中,如高速电子产品、汽车或军事硬件。拟议的项目将有助于确保研究与工业的相关性,并确保结果将被整合到真正产品的开发中,从而面向消费者。该中心将获得可视化耦合路径的独特能力;这将使该中心的范围得以扩大,面向更多的受众。

项目成果

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David Pommerenke其他文献

Configurable Resonant and Broadband Magnetic Near-Field Probe
可配置谐振和宽带磁近场探头
Balanced Intermodulation Reference With Flat Frequency Response Using Nonlinearity Equalization
使用非线性均衡的具有平坦频率响应的平衡互调基准
Passive Intermodulation on Coaxial Connector Under Electro-Thermal-Mechanical Multiphysics
电热机械多物理场下同轴连接器的无源互调
Broadband Mechanical Intermodulation Tuner Using Reconfigurable Distributed Nonlinearity
使用可重构分布式非线性的宽带机械互调调谐器
Waveguide Cell With Water Filling for Passive Intermodulation Localization on Planar Circuits
用于平面电路无源互调定位的注水波导单元

David Pommerenke的其他文献

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