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Enhancement of ultra-wide bandwidth of microstrip monopole antenna by using metamaterial structures

机译:利用超材料结构增强微带单极天线的超宽带

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As wireless communications applications continue to require more and more bandwidth, there has been continued increase in demand for ultra-wide bandwidth antennas. Planar monopole antennas are generally suitable for mobile applications and hence we researched avenues to improve the bandwidth of this antenna structure. First part in this paper describes the design of novel compact and ultra-wide bandwidth (UWB) antenna. The basis for achieving the UWB operation is through using semicircular microstrip monopole antenna with modified ground plane as semi circular patch like umbrella shape. This shape produced bandwidth ranging from 2 to 30 GHz with discontinuities from 7 GHz to 10 GHz, from 12.5 GHz to 17.5 GHz and with a size reduction around 50% from conventional rectangular shape patch. Second part of this paper is focused on further improving in the antenna performance by using metamaterial structures such as Metallo-electromagnetic band gap structure (MEBG) and spiral artificial magnetic conductors (SAMC). The final novel antenna design provides an impedance bandwidth (S
机译:随着无线通信应用对带宽的要求越来越高,对超宽带天线的需求也在不断增加。平面单极天线通常适合于移动应用,因此我们研究了改善这种天线结构带宽的途径。本文的第一部分描述了新颖的紧凑型超宽带(UWB)天线的设计。实现UWB操作的基础是通过使用半圆形微带单极天线,将其接地平面修改为伞形的半圆形贴片。这种形状产生的带宽范围为2到30 GHz,具有7 GHz到10 GHz的不连续性,从12.5 GHz到17.5 GHz的不连续性,并且尺寸比传统的矩形贴片减小了约50%。本文的第二部分着重于通过使用诸如金属电磁带隙结构(MEBG)和螺旋人工磁导体(SAMC)之类的超材料结构来进一步提高天线性能。最终新颖的天线设计可提供阻抗带宽(S

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