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Broadband proximity fed half E-shaped microstrip antennas

机译:宽带近馈半E形微带天线

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The broadband rectangular microstrip antenna is realized by using thicker substrate in conjunction with the proximity feeding technique. The proximity feeding technique realizes broader BW for substrate thickness greater than 0.06λ0. Further increase in the bandwidth is realized either by using multi-resonator gap-coupled configurations or by cutting the slots inside the patch along with the proximity feed. In this paper, a broadband proximity fed rectangular microstrip antenna is discussed. A broadband gap-coupled configuration of proximity fed rectangular microstrip antenna is proposed. It gives a bandwidth of more than 350 MHz with gain of more than 8 dBi. Further increase in the bandwidth of this configuration is realized by first cutting the rectangular slots on the radiating edges of parasitic rectangular patch which is gap-coupled along the non-radiating edges of the proximity fed rectangular patch. This gives a bandwidth of 490 MHz with broadside radiation pattern and gain of more than 9 dBi. Further the rectangular slot is cut on the non-radiating edges of all the rectangular patches which were coupled to the proximity fed antenna. This configuration gives a bandwidth of more than 500 MHz with better radiation pattern and gain characteristics as compared to the previous configuration.
机译:宽带矩形微带天线是通过使用较厚的基板和邻近馈电技术来实现的。接近进给技术可实现厚度大于0.06λ0的宽BW。通过使用多谐振器间隙耦合配置或通过切割贴片内的槽以及邻近馈电,可以实现带宽的进一步增加。本文讨论了宽带邻近馈电矩形微带天线。提出了近距离馈电矩形微带天线的宽带隙耦合配置。它提供的带宽超过350 MHz,增益超过8 dBi。通过首先在寄生矩形贴片的辐射边缘上切割矩形缝隙来实现该配置的带宽的进一步增加,该矩形缝隙沿着邻近馈送的矩形贴片的非辐射边缘间隙耦合。这提供了490 MHz的带宽,具有宽边辐射方向图,增益超过9 dBi。此外,在耦合到邻近馈电天线的所有矩形贴片的非辐射边缘上切割矩形缝隙。与先前的配置相比,此配置可提供超过500 MHz的带宽,并具有更好的辐射方向图和增益特性。

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