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Fully planar slow-wave substrate integrated waveguide based on broadside-coupled complementary split ring resonators for mmWave and 5G components

机译:基于宽边耦合的互补分体环谐振器的全平面慢波基板集成波导,用于MMWAVE和5G部件

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摘要

The authors propose a new metamaterial-inspired substrate integrated waveguide (SIW) that utilises broadside-coupled complementary split ring resonators (BC-CSRRs) instead of metalised via holes, to confine propagation within the guiding channel. Due to the resonant behaviour of the BC-CSRRs, blocking of in-plane propagation is achieved in a straightforward and efficient manner. The final waveguide is synthesised by employing two rows of CSRRs instead of each via row, resulting in a fully-planar, easy to fabricate, cost-effective solution. This new waveguide exhibits outstanding propagation characteristics, with losses close to those of the conventional SIW, providing a highly promising platform to implement low-cost planar components for millimetre-wave applications. To further confirm the potential of implementing CSRR-based SIW components, they provide designs of leaky-wave antennas in the X- and Ka-band, utilising this new concept.
机译:作者提出了一种新的超材料启发基板集成波导(SIW),其利用宽边耦合的互补分开环谐振器(BC-CSRRS)代替金属化的通孔,以限制引导通道内的传播。由于BC-CSRRS的共振行为,以直接且有效的方式实现平面内传播。通过采用两行CSRR而不是每个VIA行来合成最终波导,从而产生完全平面,易于制造,经济高效的解决方案。这种新的波导具有出色的传播特性,损失接近传统SIW的损失,提供了高度有前途的平台,以实现毫米波应用的低成本平面部件。为了进一步确认实现基于CSRR的SIW组件的可能性,它们可以在X和KA波段中提供漏洞波天线的设计,利用这种新概念。

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