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A low phase noise and frequency agility synthesizer for millimeter-wave transceiver
Qianhua Fu
With the increasing demand of millimeter-wave (MMW) communication, the performance of its frequency synthesizer has high requirements. In this paper, a multiple conversion mechanism, which used hybrid frequency synthesis technique is presented. Some key modules include linear frequency-modulated generator, agile, and low phase noise local oscillators (LOs), automatic gain control, receiver front-e
A dual-band crossover using cross-shaped microstrip line for small and large band ratios
Idury Satya Krishna, Rusan Kumar Barik, S. S. Karthikeyan
A novel design of planar dual-band microstrip crossover operating at small and large frequency ratios is presented. These features of the proposed dual-band crossover are achieved by a cross-shaped transmission line. To obtain the dual-band characteristics, the required closed form design formulas are computed using the ABCD matrix method. Based on the design formulas, the realizable small and lar
Fractional Fourier transform-based chirp radars for countering self-protection frequency-shifting jammers
Samer Baher Safa Hanbali, Radwan Kastantin
Self-protection deceptive jammers create at the radar receiver output multiple-false targets that are impossible to isolate in both time and frequency domains. In this paper, we introduce a novel technique based on fractional Fourier transform (FrFT) to discriminate between the true target echo and those false targets in the case of frequency-shifting jammers. In fact, we exploit the capability of
2D Extended envelope memory polynomial model for concurrent dual-band RF transmitters
Shoaib Amin, Per N. Landin, Peter Händel, Daniel Rönnow
The paper presents a two-dimensional (2D) extended envelope memory polynomial model for concurrent dual-band radio frequency (RF) power amplifiers (PAs). The model is derived based on the physical knowledge of a dual-band RF PA. The derived model contains cross-modulation terms not included in previously published models; these terms are found to be of importance for both behavioral modeling and d
Dual-layered polarization and frequency reconfigurable microstrip antenna by rotating breach-truncated circular radiator
Haixiong Li, Yunlong Gong, Jiakai Zhang, Jun Ding, Chenjiang Guo
In this study, a dual-layered polarization and frequency reconfigurable microstrip antenna is proposed based on sequential mechanical axial rotation of the circular metal radiator. The antenna can be reconfigured among three different polarized modes, including the linear polarization (LP), left-handed circular polarization and right-handed circular polarization in the band from 4.68 to 4.80 GHz (
A linearity improved quad-band amplifier based on E-CRLH transmission line
Rasool Keshavarz, Abbas Mohammadi, Abdolali Abdipour
This paper outlines a new class of quad-band amplifier (QBA) realized using extended composite right- and left-handed coupled lines. The design procedure to reach the QB CLs with predefined frequency operations and characteristic impedance of their ports is clearly presented. Designed and fabricated QBA operation frequencies are and (output port B) and (output port C) and the proposed structur
Optically controlled UWB antenna using photonic crystal waveguides
Heba Zakaria, Moataza Hindy, Adel El-Henawi
This paper presents a new optically controlled reconfigurable ultra-wideband antenna using reconfigurable optical router with photonic crystal substrate. The proposed antenna has three optical switches. The optical switches are made by placing silicon wafers over three slots etched on the resonator. The coplanar fed microstrip antenna can work at eight modes using optically controlled switches. Th
Flexible and moon-shaped slot UWB implantable antenna design for head implants
Roshanak Elyassi, Gholamreza Moradi
In this paper, we present a novel flexible moon-shaped slot implantable antenna for neural recording systems and head implants. It covers both medical Industrial, Scientific and Medical band (2.45 GHz) and impulse ratio ultra-wideband (IR-UWB) frequency range (3.1?10.6 GHz) for forward and backward telemetry applications. It has a simple and miniaturized structure in comparison with the antennas r
MRF volume 9 issue 7 Cover and Back matter
Anja Skrivervik, Carlo Riva, Lars Foged
MRF volume 9 issue 7 Cover and Front matter
Anja Skrivervik, Carlo Riva, Lars Foged
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