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首页> 外文期刊>International Journal of Electrical and Computer Engineering >Size Reduction and Gain Enhancement of a Microstrip Antenna using Partially Defected Ground Structure and Circular/Cross Slots
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Size Reduction and Gain Enhancement of a Microstrip Antenna using Partially Defected Ground Structure and Circular/Cross Slots

机译:使用部分变形的地面结构和圆形/十字槽的微带天线的尺寸减小和增益增强

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Microwave engineers have been known to designedly created defects in the shape of carved out patterns on the ground plane of microstrip circuits and transmission lines for a long time, although their implementations to the antennas are comparatively new. The term Defected Ground Structure (DGS), precisely means a single or finite number of defects. At the beginning, DGS was employed underneath printed feed lines to suppress higher harmonics. Then DGS was directly integrated with antennas to improve the radiation characteristics, gain and to suppress mutual coupling between adjacent elements. Since then, the DGS techniques have been explored extensively and have led to many possible applications in the communication industry. The objective of this paper is to design and investigate microstrip patch antenna that operates at 2.4 GHz for Wireless Local Area Network WLAN IEEE 802.11b/g, ,Zigbee, Wireless HART, Bluetooth and several proprietary technologies that operate in the 2.4 GHz band. The design of the proposed antenna involves using partially Defected Ground Structure and circular/cross slots and compare it to the traditional microstrip patch antenna. The results show improvement in both the gain of 3.45 dB and the S11 response of -22.3 dB along with reduction in the overall dimensions of the antenna. As a conclusion, the performance of the antenna has been improved through the incorporation with the DGS and slots structures regarding the S11 response and the gain. The proposed antenna become more compact. Finally, the radiation pattern of proposed antenna has remained directional in spite of adding slots on the ground plane.
机译:众所周知,微波工程师长期以来在微带电路和传输线的接地平面上设计出刻痕图案形状的缺陷,尽管它们对天线的实现相对较新。术语“地面缺陷结构(DGS)”精确地表示单个或有限数量的缺陷。最初,DGS用于印刷馈线下方以抑制高次谐波。然后DGS直接与天线集成在一起,以改善辐射特性,增益并抑制相邻元件之间的相互耦合。从那时起,DGS技术得到了广泛的探索,并在通信行业中引起了许多可能的应用。本文的目的是设计和研究工作在2.4 GHz的微带贴片天线,以用于无线局域网WLAN IEEE 802.11b / g / n,Zigbee,无线HART,蓝牙以及在2.4 GHz频段工作的几种专有技术。拟议天线的设计涉及使用部分变形的地面结构和圆形/交叉缝隙,并将其与传统的微带贴片天线进行比较。结果表明,天线的整体尺寸减小了3.45 dB的增益和-22.3 dB的S11响应都得到了改善。结论是,通过结合DGS和有关S11响应和增益的缝隙结构,天线的性能得到了改善。所提出的天线变得更紧凑。最后,尽管在接地面上增加了缝隙,但所提出的天线的辐射方向图仍然保持定向。

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