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首页> 外文期刊>Microwaves, Antennas & Propagation, IET >Mode control in air gap dielectric resonant antennas for applications in IEEE 802.11ac wireless local area network base station antennas
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Mode control in air gap dielectric resonant antennas for applications in IEEE 802.11ac wireless local area network base station antennas

机译:气隙介电共振天线中的模式控制,用于IEEE 802.11ac无线局域网基站天线中的应用

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摘要

This study investigates the characteristics of air gap dielectric resonator antennas (AGDRAs), with emphasis on their radiating modes and potential applications for the up-coming IEEE 802.11ac wireless local area network (WLAN) standard. An AGDRA differs from the conventional dielectric resonator antenna (DRA) by employing monopole supports to form an air gap between the dielectric resonator and the ground plane. This air gap offers more degrees of design freedom, wider bandwidth and a wider range of resonant modes, including the TE mode, which cannot be excited in the conventional rectangular DRAs. Four examples of AGDRA designs offering wide-/dual-band, dual-/circular-polarised and pattern reconfigurable were developed by exciting different modes. Good agreement between the simulated and measured results is observed, which proves the feasibility of AGDRA structures for the IEEE 802.11ac WLAN antennas.
机译:这项研究调查了气隙介电共振器天线(AGDRA)的特性,重点是其辐射模式以及即将到来的IEEE 802.11ac无线局域网(WLAN)标准的潜在应用。 AGDRA与常规介电共振器天线(DRA)的不同之处在于,它采用单极支架在介电共振器和接地层之间形成气隙。该气隙提供了更大程度的设计自由度,更宽的带宽以及更宽泛的谐振模式,包括TE模式,而传统的矩形DRA无法激发这种谐振模式。通过激发不同的模式,开发了四个提供宽/双频带,双/圆极化和图案可重构的AGDRA设计示例。观察到仿真结果与测量结果之间的良好一致性,这证明了AGDRA结构用于IEEE 802.11ac WLAN天线的可行性。

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