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Circular monopole filtering antenna with improved sideband selectivity and in-band impedance using circular-stub-load resonator
Hailong Yang, JinSheng Zhang, Xuping Li, Rongji Li, Yunqi Zhang, Yapeng Li, Xueyan Song, Xiaomin Shi
In the design of the filter antenna, the filter unit with the same structure as the radiation patch not only improves the selectivity of the band edge, but also helps to improve the in-band impedance. In this design, a compact circular monopole filtering antenna with improved sideband selectivity and in-band impedance using a circular-stub-load resonator is proposed. To obtain better sideband sele
High gain wideband and multi-band on-demand reconfigurable antenna for modern wireless application
Rashmi A. Pandhare, Mahesh P. Abegaonkar, Chandresh Dhote
This paper proposes a wide band and multiband frequency reconfigurable antenna that can operate in the UWB, GSM, GPS, 4G LTE, WLAN, and WiMAX bands. The antenna is made up of a trapezoidal-shaped monopole radiator, which was inspired by a rectangular monopole antenna. The ground plane is modified by embedding T and L-shaped slots to notch the desired operating frequency. The proposed antenna can s
Design and fabrication of an inverted hat antenna paired with a filled cavity for radio-navigation applications
Z. Hamouda, S. Azaizia, M. Hideche, A. Zemmam, T. Lasri
Antennas installed on aircraft are used for communications as well as for various radio navigation systems such as direction finders, distance measuring systems, and altimeters. Generally, these systems use blade antennas operating in the L frequency band. Recently, inverted-hat empty section monopole antennas have been found to be good candidates for such uses. In this study, we propose a new des
A dual-band filtenna with improved gain using AMC for 5G sub-6 GHz applications
I. Suryarajitha, Ruchi, R. K. Panigrahi, M. V. Kartikeyan
A gain enhanced dual-band filtenna operating at frequency bands of 3.5 and 5.3 GHz for 5G sub-6 GHz applications is presented in this article. A dual-band antenna is integrated with a filter to improve selectivity. The antenna uses printed monopoles as the radiating element, and the filtering response is achieved using a modified feedline. The designed filtenna is 50 × 38 × 1.63 mm in size with a
A compact frequency reconfigurable patch antenna with asymmetric armed U and reversed L slots for handheld wireless devices
Bhaben Saikia, Kunal Borah
A frequency reconfigurable microstrip patch antenna with a combination of an asymmetric armed U-slot and a reversed L-slot etched on a rectangular base patch of 6 GHz resonant frequency designed on an FR4 substrate ( = 4.4) is presented in this paper. Three RF PIN diodes are positioned at inimitable sites of these slots to achieve frequency reconfiguration. A DC bias circuitry, which includes DC b
Ultra-wide band flexible antenna applicable for dual-band on-body communications
Walaa M. Hassan, Ayman Ayd R. Saad, Ahmed A. Ibrahim
In this article, an ultra-wideband printed flexible monopole antenna is proposed for indoor wireless communications. A flexible Rogers RO3003 is used as a substrate, and its performance is estimated for a flat state and when subject to bending along the -axis. A 2.45 and 5.8 GHz dual-band textile artificial magnetic conductor (AMC) surface consisting of a 4 × 4 unit-cell array was integrated into
Multi-layer approach of polarization agile oscillating-type active integrated array antennas for RFtransmitter front-end
Maodudul Hasan, Eisuke Nishiyama, Ichihiko Toyoda
This paper presents a polarization switchable self-oscillating active integrated array antenna (AIAA) using a multi-layer approach. The antenna comprises two antenna elements, four PIN diodes, and a Gunn oscillator employing a microstrip line resonator. Reconfiguring the feed network of the array antenna realizes slant polarization (± 45°) switching. The multi-layer structure allows the patch spac
MRF volume 15 issue 3 Cover and Back matter
MRF volume 15 issue 3 Cover and Front matter
Design of miniaturized single and dual-band bandpass filters using diamond-shaped coupled line resonator for next-generation wireless systems
Bilal Mushtaq, Sohail Khalid
This paper presents a multi-mode resonator (MMR) for next-generation wireless systems that achieves single and dual-band bandpass filter (BPF) responses using a split-ring dual-path structure. The proposed BPF design is realized by employing two pairs of parallel couple lines and two symmetrical step-impedance open-circuited stubs (SIOCS). SIOCS are used to improve selectivity and increase the num
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