Co-planar waveguide (CPW) slotted bow-tie antenna with band-notch using polygon-shaped branches structure

M. Abdulmalek, H. Nornikman, O. Al-Khatib, N. Abdulaziz, M. Aziz, B. Ahmad, H. Rahim, M. Mustapha, M. M. D. M. Muslihat, S. B. York, S. H. M. Yusof, N. Nazim
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Abstract

Nowadays, the world has rapidly evolved in the communication system in term of speed and information capacity. Thus, a bow-tie antenna is the suggestion to use because of its exhibits low profile and lightweight. However, the bow-tie patch antenna, inherently have narrow bandwidths and in general are half wavelength structures operating at the fundamental resonant mode. To cater this problem, a slotted bow-tie antenna is designed for wireless applications with consist techniques a pair of polygon-shaped branches structure is implemented on each arm of the bow-tie slot antenna characteristics. The co-planar waveguide is applied to this antenna to effect the wider bandwidth to the antenna. This proposed CPW slotted bow-tie antenna is using FR-4 substrate with dielectric constant, εr = 4.4 and the electrical conductivity tangent loss, tan Δ = 0.019 with substrate dimension of 52.4 mm length × 22.3 mm width. Several parametric studies are done to make sure the suitable dimension for best antenna performance. In this case, several different dimensions of three part are consider to study, such as the microstrip line width (Wml), height of feedline (Hfl), and the length of branch, Lbr. The basic antenna without polygon-shaped branches can offer a wider frequency band operation at 2.293 GHz–2.541 GHz with bandwidth of 248 MHz effect by the co-planar waveguide technique. After the addition of the polygon-shaped branches structure to the bow-tie part, its effect a band-notch effect at the 2.46 GHz, while creating a new resonant frequency at two different part at 2.394 GHz and 2.511GHz with resonant frequency of −18.585dB and 19.555dB, respectively.
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带陷波的共面波导(CPW)开槽领结天线采用多边形分支结构
当今世界,通信系统在速度和信息容量方面发展迅速。因此,一个领结天线是建议使用,因为它的展品低姿态和重量轻。然而,领结贴片天线固有地具有狭窄的带宽,并且通常是工作在基本谐振模式下的半波长结构。为解决这一问题,设计了一种适用于无线应用的开槽领结天线,采用多种技术,在领结天线的每条臂上实现一对多边形分支结构。该天线采用了共面波导,使天线具有更宽的带宽。该CPW开槽领结天线采用介电常数εr = 4.4,电导率正切损耗tan Δ = 0.019的FR-4衬底,衬底尺寸为52.4 mm长× 22.3 mm宽。为了确定最佳天线性能的合适尺寸,进行了一些参数研究。在这种情况下,考虑研究微带线宽度(Wml)、馈线高度(Hfl)和支路长度(Lbr)等三个部分的几种不同尺寸。无多边形分支的基本天线通过共面波导技术可以提供2.293 GHz - 2.541 GHz更宽的频带工作,带宽达到248 MHz。在领结部分加入多边形分支结构后,在2.46 GHz处产生带陷波效应,同时在2.394 GHz和2.511GHz处产生新的谐振频率,谐振频率分别为- 18.585dB和19.555dB。
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来源期刊
Advances in Engineering Education
Advances in Engineering Education Social Sciences-Education
CiteScore
2.90
自引率
0.00%
发文量
8
期刊介绍: The journal publishes articles on a wide variety of topics related to documented advances in engineering education practice. Topics may include but are not limited to innovations in course and curriculum design, teaching, and assessment both within and outside of the classroom that have led to improved student learning.
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