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Microwave/millimeter wave metamaterial development using the design of experiments technique

机译:微波/毫米波超材料开发采用实验技术设计

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The successful use of design of experiments (DOE) approach in a feasibility and design study of a metamaterial structure is presented. The frequency of interest is 40 GHz and the technology used is multilayer low temperature cofired ceramic (LTCC). The chosen approach for the double negative metamaterial implementation is a loaded coplanar waveguide (CPW) transmission line. The design goals are a resonant frequency of 40 GHz and minimum insertion loss at that frequency. The electromagnetic performance of the loaded transmission line is simulated with a full wave time domain commercial simulator. The results of these simulations are incorporated into the DOE technique. First, the significant factors in achieving each of the goals are identified, then statistical models are developed for the two output variables and applied to optimize the structure.
机译:介绍了在可行性和设计研究中的实验设计(DOE)方法的成功使用。感兴趣的频率为40 GHz,使用的技术是多层低温COFired陶瓷(LTCC)。双负超材料实现的所选择的方法是加载的共面波导(CPW)传输线。设计目标是40 GHz的谐振频率和该频率的最小插入损耗。用全波时域商业模拟器模拟负载传输线的电磁性能。这些模拟的结果纳入了DOE技术。首先,识别出实现每个目标的重要因素,然后为两个输出变量开发统计模型,并应用于优化结构。

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