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首页> 外文期刊>International journal of RF and microwave computer-aided engineering >Design and Analysis of Slot Antenna with Band Notch Function
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Design and Analysis of Slot Antenna with Band Notch Function

机译:带陷波功能的缝隙天线设计与分析

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In this article, the design, simulation, and construction of a novel wide rectan-gular slot antenna fed by a 50 Ω coplanar waveguide (CPW) are presented and investigated for multifunctional communication systems. The physical dimension of the antenna is 29 mm (length) × 32 mm (width) × 1.6 mm (thickness). Detailed simulations and experimental inves-tigations are performed to understand its behavior and to optimize for 2.4 GHz wireless local area network (WLAN) and ultra wideband (UWB) operations. The proposed slot antenna is etched on an FR4 substrate with a thickness of 1.6 mm and relative permittivity of 4.4. To improve the impedance matching, a stepped stub structure with CPW feed technique is used. According to the measured results, the proposed antenna has a large bandwidth from 2.1 to 11.6 GHz for voltage standing wave ratio (VSWR) less than 2, totally satisfying the require-ment of 2.4 GHz WLAN and UWB systems, while providing the required band notch function from 5.1 to 5.9 GHz. The study of time domain characteristics and surface current distribu-tions also indicate the band-notched function of the antenna. The radiation patterns display nearly omnidirectional performance and the antenna gain is stable except for the rejected frequency band (5.1-5.9 GHz). Moreover, group delays are within 1.5 ns except for the notch-band. It is observed that the simulated and experimental results have good agreement with each other.
机译:在本文中,提出并研究了由50Ω共面波导(CPW)馈电的新型宽矩形缝隙天线的设计,仿真和构造,并针对多功能通信系统进行了研究。天线的物理尺寸为29毫米(长)×32毫米(宽)×1.6毫米(厚)。进行了详细的仿真和实验研究,以了解其行为并针对2.4 GHz无线局域网(WLAN)和超宽带(UWB)操作进行优化。所提出的缝隙天线在FR4基板上蚀刻,厚度为1.6 mm,相对介电常数为4.4。为了改善阻抗匹配,使用了具有CPW馈电技术的阶梯状短截线结构。根据测量结果,建议的天线具有2.1至11.6 GHz的大带宽,电压驻波比(VSWR)小于2,完全满足了2.4 GHz WLAN和UWB系统的要求,同时提供了所需的频段陷波功能从5.1到5.9 GHz。时域特性和表面电流分布的研究也表明了天线的带隙功能。辐射方向图显示出几乎全向的性能,并且天线增益除被拒绝的频段(5.1-5.9 GHz)以​​外均稳定。此外,除陷波频带外,群时延均在1.5 ns之内。可以看出,仿真结果与实验结果相互吻合。

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