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A Planar Dipole Antenna with Wideband Characteristics for UWB and Wireless LAN

机译:用于UWB和无线LAN的具有宽带特性的平面偶极天线

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摘要

In recent years, attention has focused on UWB (Ultra Wideband), which is suitable for high-speed, large-capacity near-distance wireless communication systems. Since UWB uses the 3.1 - to 10.6-GHz bands, research and development into antennas capable of obtaining wideband characteristics has become active. Research has also accelerated on antennas that can be shared with wireless LAN and other wireless communication systems. In this paper, we propose a wideband characteristics method that uses trapezoidal conductors for planar dipole antennas that satisfy the ultrawide rnbandwidths required for UWB, and for planar asymmetric dipole antennas that can be used for both IEEE802.11b/g, a wireless LAN in the 2.4-GHz band, and UWB. We performed analysis and measurement of impedance characteristics, and of directionality in each frequency band, and confirmed that the analysis results and measurement results virtually match. We also performed measurement to study group delay characteristics. We used the proposed method to achieve an antenna that is effective for both UWB and the 2.4-GHz-band wireless LAN, and showed the validity of the wideband characteristics method.
机译:近年来,注意力集中在适用于高速,大容量近距离无线通信系统的UWB(超宽带)上。由于UWB使用3.1-10.6 GHz频段,因此能够进行宽带特性研究的天线的研究和开发已经开始。可以与无线局域网和其他无线通信系统共享的天线的研究也在加速。在本文中,我们提出了一种宽带特性方法,该方法将梯形导体用于满足UWB要求的超宽带带宽的平面偶极子天线,以及可用于IEEE802.11b / g(无线局域网中的无线局域网)的平面非对称偶极子天线。 2.4 GHz频段和UWB。我们对每个频带的阻抗特性和方向性进行了分析和测量,并确认分析结果和测量结果基本匹配。我们还进行了测量以研究组延迟特征。我们使用提出的方法来实现对UWB和2.4 GHz频段无线局域网均有效的天线,并证明了宽带特性方法的有效性。

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