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Simultaneous Electric and Magnetic Two-Dimensionally Tuned Parameter-Agile SIW Devices

机译:同时进行电和磁二维调整的参数捷变SIW设备

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摘要

A concept of simultaneous electric ($E$) and magnetic ( $H$) 2-D tuning is presented, demonstrated, and applied for the first time through the theoretical and experimental studies of parameter-agile substrated integrated waveguide (SIW) devices. First of all, a two-dimensionally tuned SIW cavity is introduced as a building block. Considering only electric tuning with varactor diodes, no more than 1.3% of total tuning range is accomplished, while for simultaneous electric and magnetic tuning, it is extended to 7.9% with an unloaded $Q$ factor of better than 130. Using 0.05–0.1-pF surface mount capacitors, a total tuning range of as much as 20% is experimentally achieved at 12 GHz. Another characteristic of significant interest is that the proposed 2-D tuning not only allows changing frequency, but also simultaneously optimizing other key parameters such as the return loss or unloaded $Q$ factor. Second, the dual-tuned SIW cavity resonator is further accommodated to demonstrate parameter agile two-dimensionally tuned bandpass filter at 12 GHz. The proposed concept of 2-D tuning theoretically and experimentally demonstrates a simultaneous frequency and bandwidth tuning of bandpass filter. This filter can perform both frequency-tunable constant bandwidth, and constant-frequency variable-bandwidth operations. Third, a cavity backed slot antenna using the proposed dual tuning is demonstrated. The tuning not only achieves a higher frequency range, but the antenna return loss is optimized to improve the overall efficiency.
机译:电磁( $ E $ )和电磁( $ H $ 。首先,引入了二维调整的SIW腔体作为构建块。仅考虑使用变容二极管进行电调谐,就不会超过总调谐范围的1.3%,而对于同时进行电和磁调谐,使用空载的 $ Q $ 系数优于130。使用0.05–0.1pF表面贴装电容器,在12 GHz的实验条件下,总调谐范围高达20%。令人关注的另一个特征是,建议的2-D调整不仅允许改变频率,而且还可以同时优化其他关键参数,例如回波损耗或空载 inline“> $ Q $ 因子。其次,进一步容纳了双调谐的SIW腔谐振器,以演示12 GHz频率下的参数捷变二维调谐带通滤波器。所提出的二维调谐概念在理论上和实验上证明了带通滤波器的同时频率和带宽调谐。该滤波器可以执行频率可调的恒定带宽和恒定频率的可变带宽操作。第三,展示了使用所提出的双重调谐的背腔缝隙天线。调谐不仅实现了更高的频率范围,而且还优化了天线回波损耗以提高整体效率。

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