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Compact UWB monopole antenna with reconfigurable band-notch characteristics
Liping Han, Jing Chen, Wenmei Zhang
A compact ultra-wideband (UWB) monopole antenna with reconfigurable band-notch characteristics is demonstrated in this paper. It is comprised of a modified rectangular patch and a defected ground plane. The band-notch property in the WiMAX and WLAN bands is achieved by etching an open-ended slot on the radiating patch and an inverted U-shaped slot on the ground plane, respectively. To obtain the r
Circular-shaped differential wideband band pass filter
Dharmendra Kumar Jhariya, Akhilesh Mohan, Rahul Kaushik, Vishal Narain Saxena
The design of a circular-shaped differential wideband band pass filter (BPF) is described. The proposed filter is compact and provides good common mode (CM) suppression. It consists of four ports with a circular-shaped differential mode (DM). The analysis of the filter has been carried out by bisecting it into identical two-port networks along the symmetry plane, resulting in a band stop or band p
Near-field to far-field transformation applied to UHF antennas over lossy ground
Nicolas Bourey, Muriel Darces, Yves Chatelon, Marc Hélier
This paper deals with a near-field to far-field transformation able to predict the radiation of UHF antennas located over a lossy ground. From near-field measurements, an equivalent set of dipole sources is obtained as a model of the characterized antenna. The paper details the main steps of the transformation and describes the specific experimental set-up designed for the application. Simple dir
Tri-beam slot antenna array based on substrate integrated waveguide (SIW) technology
Zhenye Wang, Xiwang Dai, Wen Sun
A novel tri-beam slot antenna array based on substrate integrated waveguide (SIW) technology is proposed in this paper. The beam forming network is a 3 × 3 Butler matrix consisted of three couplers and four phase shifters. A 1.76 dB coupler is located between two 3 dB couplers, with this arrangement; the input signal can be divided into three parts with the same amplitude and certain phase differe
Design of subwavelength metamaterial resonator based on new self-coupling strategy
Larbi Benkhaoua, Smail Mouissat, Mohamed Taoufik Benhabiles, Mohamed Lahdi Riabi
In this paper, edge-broad-side coupled spiral resonator (EBC-SR) is proposed to enhance the miniaturization of the metamaterial resonators. After a comparative analysis, it is found that the proposed strategy can drastically reduce the electrical size of metamaterial resonators. This is due to the use, at the same time, advantages of edge coupling, broad-side coupling, and self-coupling. A lumped
An X-band magnetic dipole quasi-Yagi antenna based on a dielectric resonator
Zhong-Yu Qian, Wen-Jian Sun, Xue-Feng Zhang, Jian-Xin Chen
A magnetic dipole quasi-Yagi antenna based on a dielectric resonator (DR) is proposed in this letter. The dominate TE mode of the rectangular DR is used as a magnetic dipole which can be differentially fed by the coplanar strip line (CPS). Thanks to the DR employment, the proposed antenna has several advantages such as compact size and flexible design which means the 3-D dimensions of the DR can b
Slot loaded EBG-based metasurface for performance improvement of circularly polarized antenna for WiMAX applications
Alka Verma, Anil Kumar Singh, Neelam Srivastava, Shilpee Patil, Binod Kumar Kanaujia
In this paper, an electromagnetic band gap (EBG) metasurface (MS) superstrate-based circularly polarized antenna for the WiMAX (3.5 GHz) band is proposed. The proposed structure comprises a 2 × 2 slot-loaded rectangular patch MS array that can be perceived as a polarization-dependent EBG MS superstrate. Furthermore, to achieve circular polarization, the proposed antenna has an inclined coupling sl
Analysis and design of TEM-TE coaxial waveguide bend mode converters
Qiang Zhang, Xuhao Zhao, Chengwei Yuan, Jiande Zhang
Two coaxial waveguide bend mode converters that transform coaxial transverse electromagnetic mode to TE coaxial waveguide mode are presented in this paper. Both converters are designed and optimized on the basis of the strictly derived mode coupling coefficients. Conversion efficiencies of both converters are over 99% and the power-handling capacities reach a gigawatt level. The combined dual-bend
Design and analysis of a tri-band frequency selective surface with a second-order response
Chunyan Gao, Hongbin Pu, Shan Gao, Chunlan Chen, Yong Yang
In this paper, a sandwiched type frequency selective surface (FSS) is designed and analyzed. The design procedure and operating principle is given based on the equivalent circuit model. The proposed FSS includes two identical layers of periodic metallic arrays, which are separated by a foam layer. In each layer of the periodic array, the unit cell is composed of a gridded-triple square loop struct
One-dimensional beam-steering Fabry?Perot cavity (FPC) antenna with a reconfigurable superstrate
Lu-Yang Ji, Shuai Fu, Lin-Xi Zhang, Jian-Ying Li
In this work, a new reconfigurable discrete 1D beam-steering Fabry?Perot cavity antenna with enhanced radiation performance is presented. It consists of a probe-fed patch antenna printed on the ground plane and a reconfigurable metasurface acting as the upper partially reflective surface to realize beam steering. By utilizing 6 × 6 proposed reconfigurable unit cells on the superstrate, the beam-st
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