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Rain fade margin of terrestrial line-of-sight (LOS) links for 5G networks in Peninsular Malaysia
Shi Jie Seah, Siat Ling Jong, Hong Yin Lam, Jafri Din
Advanced telecommunication systems are moving toward a high data transfer rate and wider bandwidth. The 5G communication network has recently been implemented for such aims. However, 5G networks operating with high operating frequency (typically above 20 GHz) could lead to impairments because of the atmospheric phenomena mainly precipitation and especially heavy rain. To address this, an optimum r
MRF volume 14 issue 5 Cover and Back matter
MRF volume 14 issue 5 Cover and Front matter
Spurline-embedded compact hairpin-line bandpass filters for wide harmonic suppression
Tarun Kumar Das, Sayan Chatterjee
The current paper describes the design of a fourth-order compact narrow-band hairpin-line bandpass filter centered at 2.5 GHz and enhanced stopband suppression ~38 dB required for wireless local area network (IEEE802.11b). The size reduction of 24% has been achieved for a conventional hairpin-line filter with a second-order inward folding of the open-end arms with an improvement in the skirt chara
Small UWB antenna with two stop bands by a compact EBG cell loaded with new open meander slots
Farzad Alizadeh, Changiz Ghobadi, Javad Nourinia
In this paper, a small ultra-wideband (UWB) antenna with two stop bands by a compact electromagnetic bandgap (EBG) cell loaded with two new open meander slots is presented. With the coupling of the EBG cell to the feedline, the stop bands are formed. The designed EBG cell is a mushroom type that has the advantages of being able to independently control the stop bands, high responsiveness selectivi
A review on microstrip patch antenna parameters of different geometry and bandwidth enhancement techniques
Brijesh Mishra, Ramesh Kumar Verma, N Yashwanth, Rakesh Kumar Singh
This paper presents a comprehensive review of symmetrically shaped antennas in terms of antenna size, dielectric materials, resonating band, peak gain, radiation pattern, simulating tools, and their applications. In this article, flower shape, leaf shape, tree shape, fan shape, Pi shape, butterfly shape, bat shape, wearable, multiband, monopole, and fractal antennas are discussed. Further, a surve
A single layer wideband metasurface absorber for electromagnetic interference minimization in Ku-band applications
Yogita Khanna, Y. K. Awasthi
In this paper, a wideband ultrathin metasurface absorber is investigated. The proposed absorber comprises a periodic array of a unit cell ring structure. The ring structure and patch inside are tuned to realize the desired frequency bandwidth. The structure has a frequency bandwidth of 7.4 GHz with a center frequency of 15 GHz and fractional bandwidth of 50%. Simulated and measured results show th
Ultra-wideband and high gain antipodal tapered slot antenna with planar metamaterial lens
Ziye Wang, Zhengwei Yang, Xiao Zhao, Linyan Guo, Minjie Guo
To solve the problems of low gain, narrow bandwidth, and poor radiation directivity of conventional ground penetrating radar antenna, this paper proposes an ultra-wideband and high-gain antipodal tapered slot antenna (ATSA) with planar metamaterial lens. As a constituent part of this lens, a new non-resonant metamaterial unit cell is introduced and analyzed by the full-wave simulation tool. The si
Low-profile, wideband dual-polarized 1 × 2 MIMO antenna with FSS decoupling technique
B. Anudeep, K. Krishnamoorthy, P. H. Rao
A low-profile, wideband dual-polarized 1 × 2 multiple-input-multiple-output (MIMO) antenna with frequency selective surface (FSS) decoupling technique is presented. Low profile is realized with two different artificial magnetic conductor (AMC) cells out of which one operates at 3.5 GHz and other with dual band at 3.1 and 4.5 GHz. The proposed antenna height is maintained at 0.125? which is signifi
A tuneable rat-race coupler for full duplex communications
G. T. Watkins
Full duplex (FD) could potentially double wireless communications capacity by allowing simultaneous transmission and reception on the same frequency channel. A single antenna architecture is proposed here based on a modified rat-race coupler to couple the transmit and receive paths to the antenna while providing a degree of isolation. To allow the self-interference cancellation (SiC) to be maximiz
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