M. F. I. Saad, S. Rahim, M. Nor, M. Y. Yahya, A. R. Razali
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The antenna was mounted on the flexible raw material of Jute as a substrate that have relative permittivity of 2.36, tangent loss 0.005407 at 5GHz frequency and the thickness is 1. 68mm. Conductive material Shield it Super with conductivity of 1.18×105 and thickness of 0.17mm has been use as radiator in this design and the antenna was designed with ungrounded coplanar waveguide feeding technic. A simple CPW -UWB antenna was designed and simulated using CST (Computer Simulation Technology) software. Optimization to the antenna resulted, improvement at bandwidth, compared with the first design antenna. The proposed antenna achieved bandwidth of ~7.15GHz which is operating frequency is from 3.48Ghz to 10.63GHz. 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引用次数: 0
摘要
由于对宽带通信的高需求,超宽带(UWB)天线已被视为在现代和未来无线通信系统中获得声誉的技术之一,因为它的工作频率范围从3.1GHz到10.6GHz。超宽带天线可以与许多无线应用相配套,如无线个人区域网络(WPAN),便携式设备,它具有许多功能,并在不同的频率范围内工作。在设计天线时很少考虑像黄麻这样的有机材料,因为它更环保、制造成本低、耐用、可持续和可再生。天线安装在柔性原料黄麻上作为衬底,在5GHz频率下相对介电常数为2.36,正切损耗为0.005407,厚度为1。68毫米。本设计采用导电材料Shield it Super作为辐射体,其导电性为1.18×105,厚度为0.17mm,天线采用不接地共面波导馈电技术设计。设计了一种简单的CPW -UWB天线,并用CST (Computer Simulation Technology)软件进行了仿真。与最初设计的天线相比,对天线进行了优化,提高了带宽。该天线实现了~7.15GHz的带宽,工作频率在3.48 ~ 10.63GHz之间。该天线的驻波比<2,效率大于75%,实现增益和指向性均大于2dBi,并且在整个频率范围内工作于全向方向。
CPW-UWB Flexible Composite Antenna using Jute Textile for WPAN Applications
Ultra-wideband (UWB) antennas has seen to be one of the technologies that gaining fame in modern and future wireless communication systems, due to high demand for wideband communication, since it works at frequency ranges from 3.1GHz to 10.6GHz. UWB antenna can be suite with many wireless applications like WPAN (wireless Personal area network), portable devices which is it came with a lot of functions and operated at different frequency ranges. There is very less attention has been given to consider organics material like jute in designing an antenna, where it is more environmentally friendly, low cost of manufacturing, durability, sustainable and renewable. The antenna was mounted on the flexible raw material of Jute as a substrate that have relative permittivity of 2.36, tangent loss 0.005407 at 5GHz frequency and the thickness is 1. 68mm. Conductive material Shield it Super with conductivity of 1.18×105 and thickness of 0.17mm has been use as radiator in this design and the antenna was designed with ungrounded coplanar waveguide feeding technic. A simple CPW -UWB antenna was designed and simulated using CST (Computer Simulation Technology) software. Optimization to the antenna resulted, improvement at bandwidth, compared with the first design antenna. The proposed antenna achieved bandwidth of ~7.15GHz which is operating frequency is from 3.48Ghz to 10.63GHz. Moreover, the antenna has VSWR<2, Efficiency more than 75%, realized gain and directivity more than 2dBi and it also works in omnidirectional pattern, at entire frequency range.