带缺口超宽带天线:最新趋势和发展

Amine Hedfi, Mohamed Hayouni
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引用次数: 6

摘要

随着3.1-10.6 GHz频段的批准和分配,超宽带(UWB)技术已成为高数据速率无线通信中最有前途的技术之一。小型超宽带天线作为超宽带系统的重要组成部分,已成为近年来研究的热点。文献中已经报道了几种显示理想特性的技术。然而,随着无线通信设备数量的增加,由于在超宽带系统的分配频谱上存在一些其他通信标准的窄带,因此可能存在电磁干扰的问题。本文综述了近年来用于抑制此类窄带电磁干扰的主要技术。相对于WiMAX、WLAN和下行链路x波段卫星通信系统的三个陷波带是通过在辐射贴片中蚀刻一根半圆形半波长和开放式四分之一波长直槽来实现的。双缺口带也可以通过在辐射贴片中加入两个Γ-shaped狭缝和Ω-shaped寄生结构来实现。另一种用于抑制干扰的技术是将两个短路折叠的阶梯式阻抗谐振器(SIRs)嵌入地平面。最后提出的带陷波技术包括在辐射贴片和地平面上合并槽。研究和讨论之后是实验和模拟报告的结果,如UWB系统分配频谱上的反射系数,阻抗带宽,辐射方向图和天线尺寸。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Band-notched UWB antennas: Recent trends and development
Since the approval and allocation of the frequency range of 3.1-10.6 GHz, ultrawideband (UWB) technology has become one of the most promising technologies for the high-data-rate wireless communications. Compact UWB antenna, as an essential part of the UWB system, has become the main subject of recent researches. Several techniques have been reported in the literature showing desirable characteristics. However, with an increase in the number of wireless communication devices, there is a problem of a possible electromagnetic interference, as over the allocated spectrum of the UWB system, some narrow band of other communication standards exist. In this paper, we summarize the main recent applied techniques used to suppress electromagnetic interferences with such narrow bands. Three notched bands relative to WiMAX, WLAN and for downlink X-band satellite communication systems are achieved by incorporating a stick of semicircular half-wavelength and open-ended quarter-wavelength straight slots etched in the radiating patch. Dual notched-bands can also achieved by incorporating two Γ-shaped slits and Ω-shaped parasitic structure in the radiating patch. Another technique, applied to suppress interference, consisted of two short-circuited folded Stepped Impedance Resonators (SIRs) embedded in the ground plane. The last presented band-notching technique consists of incorporating slots in both radiating patch and ground plane. The studies and discuss are followed by experimental and simulated reported results such as the coefficient reflexion over the allocated spectrum of the UWB system, the impedance bandwidth, radiation patterns and the antenna dimensions.
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