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Coplanar waveguide-fed slot antenna for wireless local area network/worldwide interoperability for microwave access applications

机译:用于无线局域网/微波访问应用的全球互通性的共面波导馈送缝隙天线

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Owing to the recent demand to incorporate the two communication services, the wireless local area network (WLAN) and worldwide interoperability for microwave access (WiMAX), therefore dual-band antennas that are designed with sufficient bandwidths to cover both WLAN and WiMAX operating bands are presently very important topics of research. Owing to the difficulty of simultaneously achieving both compactness and wideband, the dimensions of most dual-band slot antenna designs that are reported in recent literature exceed 35 ?? 40 mm2. Therefore this study presents a compact (32 ?? 32 mm2) coplanar waveguide (CPW)-fed slot antenna design with dual-band operation for WLAN (2.4/5.2/ 5.8 GHz) and WiMAX (2.3/2.5/3.5/5.7 GHz) applications. To achieve wide 10 dB bandwidth for the lower operating band (58%), the technique of applying a square-ring slot antenna type with an asymmetric ground plane was used herein, and a broad upper operating band (32%) was attained by introducing a stub-protruded monopole and loading a double-bent stub into one of the asymmetric CPW ground planes. The process of designing the proposed antenna is explicitly shown, and parametric studies were carried out by simulation. Typical experimental measurements were also conducted and compared with the simulated results.
机译:由于最近要求将两种通信服务,无线局域网(WLAN)和全球微波访问互操作性(WiMAX)结合在一起,因此设计了足够带宽以覆盖WLAN和WiMAX工作频带的双频天线成为了现实。目前非常重要的研究主题。由于难以同时实现紧凑性和宽带性,最近文献报道的大多数双频带缝隙天线设计的尺寸都超过了35Ω。 40毫米 2 。因此,本研究提出了一种紧凑的(32 ?? 32 mm 2 )馈电共面波导(CPW)缝隙天线设计,可在WLAN(2.4 / 5.2 / 5.8 GHz)和WiMAX(2.3 /2.5/3.5/5.7 GHz)应用。为了在较低的工作频段(58%)上获得较宽的10 dB带宽,本文采用了将方形环形缝隙天线类型与非对称接地平面一起使用的技术,并且通过引入以下方法获得了较宽的较高的工作频段(32%)一个短截线突出的单极子,然后将一个双弯曲短截线根加载到不对称CPW接地平面之一中。明确显示了拟议天线的设计过程,并通过仿真进行了参数研究。还进行了典型的实验测量,并与模拟结果进行了比较。

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