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1993 documents found for International Journal
ANN-based radar approach to detect breast cancers in fibro-glandular tissues: numerical analysis
Salvatore Caorsi, Claudio Lenzi
Published online : 01-10-2017
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This paper presents a new artificial neural network (ANN)-based radar data processing approach for the detection of breast cancers located inside fibro-glandular tissues. The aim is not the breast imaging but detecting tumors through ANN processing of data extracted from the radar signals measured around the breast. The proposed approach has been assessed using several realistic two-dimensional br
Electrical performance analysis of a CPW capable of transmitting microwave and optical signals
Behnam Banan, Farhad Shokraneh, Pierre Berini, Odile Liboiron-Ladouceur
Published online : 01-10-2017
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A study on the microwave performance of a metallic transmission line capable of simultaneously transmitting microwave and optical signals is presented targeting millimeter-long interconnects. Conventional analytical solution is used to find the optimal structure for a given characteristic impedance. Then, functionality of the link is validated through S-parameter measurements for 3?13 mm long line
A 20 GHz microwave heater for digital microfluidic
Tomislav Markovic, Song Liu, Ilja Ocket, Bart K. J. C. Nauwelaers
Published online : 01-10-2017
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This paper reports on a microwave heater at 20 GHz for digital microfluidics. It allows rapid heating of nanoliter fluid samples and simultaneous temperature monitoring by correlating the reflection coefficient of the heater with the temperature dependency of the relative permittivity of the lossy fluid under consideration, in this case demineralized water. Microwave heating was performed with pow
Monostatic continuous-wave radar integrating a tunable wideband leakage canceler for indoor tagless localization
Marco Mercuri, Pawe? Barmuta, Ping Jack Soh, Paul Leroux, Dominique Schreurs
Published online : 01-10-2017
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Continuous-wave (CW) radars have been recently investigated in healthcare aiming at contactless health monitoring. However, a major problem in monostatic CW architectures is represented by the unwanted leakage produced by poor isolation between transmitter and receiver, which can drastically decrease the receiver's sensitivity reducing therefore the radar dynamic range. Although this situation can
MIMO antennas with diversity and mutual coupling reduction techniques: a review
Leeladhar Malviya, Rajib Kumar Panigrahi, M. V. Kartikeyan
Published online : 01-10-2017
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Multiple input multiple output (MIMO) antenna is at core of the presently available wireless technologies. The design of MIMO antennas over a limited space requires various approaches of mutual coupling reduction, otherwise gain, efficiency, diversity gain, and radiation patterns will be severely affected. Various techniques have been reported in literature to control this degrading factor and to
A wideband bandpass filter with multi-mode resonator and mixed electromagnetic coupling
Mengkui Shen, Xian Qi Lin, Zhaosheng He
Published online : 01-10-2017
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In this paper, a wideband bandpass filter using multi-mode resonator and mixed electromagnetic (EM) coupling is presented. To increase the bandwidth while not enlarge the circuit size, multi-short-stub multi-mode resonator, which produces multiple resonances, is utilized. Furthermore, the capacitive gap between open ends of the stubs is utilized to realize electric coupling between the multi-mode
Double-ring multiband microstrip patch antenna with parasitic strip structure for heterogeneous wireless communication systems
Geetanjali Singla, Rajesh Khanna
Published online : 01-10-2017
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In this paper, a novel design of compact Coplanar Waveguide-fed planar monopole antenna with enhanced bandwidth and multiband characteristics has been proposed. Two rectangular rings have been incorporated in a rectangular patch to obtain multiband operation for Wireless Local Area Network (WLAN) (2.4/5.2/5.8 GHz) and Worldwide Interoperability for Microwave Access (WiMAX) (2.3/2.5/5.5 GHz) bands.
A new hemostatic device utilizing a novel transmission structure for delivery of adrenaline and microwave energy at 5.8 GHz
Shaun C. Preston, Malcolm White, Brian Saunders, Zacharias Tsiamoulos, Christoper P. Hancock
Published online : 01-10-2017
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A novel transmission line structure has been developed to facilitate the delivery of both adrenaline and microwave energy to achieve hemostasis. A proximal end impedance transformer and radiative tip have been designed and manufactured to provide good match between the novel hollow transmission line and the microwave source and tissue, respectively. Further consideration of the challenges and prob
Conical dielectric resonator antenna with improved gain and bandwidth for X-band applications
Sounik Kiran Kumar Dash, Taimoor Khan, Binod Kumar Kanaujia
Published online : 01-10-2017
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In this paper, a simple conical-shaped dielectric resonator antenna operating in HEM mode is presented for X-band wireless applications. A rectangular slot with a running microstrip line is used for excitation purpose. By placing a FR-4 based superstrate at 7 mm height from the ground FR-4 substrate and incorporating a set of modified ground plane on either side of the feed line, gain is improved
20?25 Gbit/s low-power inductor-less single-chip optical receiver and transmitter frontend in 28 nm digital CMOS
László Szilágyi, Guido Belfiore, Ronny Henker, Frank Ellinger
Published online : 01-10-2017
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The design of an analog frontend including a receiver amplifier (RX) and laser diode driver (LDD) for optical communication system is described. The RX consists of a transimpedance amplifier, a limiting amplifier, and an output buffer (BUF). An offset compensation and common-mode control circuit is designed using switched-capacitor technique to save chip area, provides continuous reduction of the
A CPW-fed uniplanar dual-band tri-polarization diversity antenna based on PIN diode for the wireless communication
Haixiong Li, Yunlong Gong, Jiakai Zhang, Jun Ding, Chenjiang Guo
Published online : 01-10-2017
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In this paper, a coplanar waveguide (CPW)-fed dual-band uniplanar tri-polarization reconfigurable antenna based on the PIN diode switch is proposed. The proposed antenna can be reconfigured between the linear polarization (LP) and the circular polarization (CP) mode, including both the right-handed circular polarization and left-handed circular polarization simultaneously within the dual operating
Dual circularly polarized multilayer MIMO antenna array with an enhanced SR-feeding network for C-band application
Mahdi Jalali, Mohammad Naser-Moghadasi, Ramezan Ali Sadeghzadeh
Published online : 01-10-2017
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Wide-band circularly polarized multi-input multi-output (MIMO) antenna array with a 2 × 4 feed network was proposed for C-band application. Different unique techniques were utilized in the proposed array to enhance the antenna characteristics, such as gain, 3 dB axial ratio bandwidth (ARBW), impedance tuning, and ruinous mutual coupling effects. A miniaturized dual-feed Tai chi-shaped antenna elem
Characterization of the composite right/left-handed transmission line metamaterial circuits using iterative method WCIP
Taieb Elbellili, Mohamed Karim Azizi, Lassaad Latrach, Hichem Trabelsi, Ali Gharsallah, Henri Baudrand
Published online : 01-10-2017
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A new study of right-handed and composite right/left-handed metamaterial transmission lines (TL) using their equivalent circuits and a new approach of the wave concept iterative process method is presented. This approach has the advantage of simulating all the periodic structures by only simulating one basic cell thanks to the surrounding periodic walls. A suitable choice of the cell length is nec
Microwave dielectrometry as a tool for the characterization of blood cell membrane activity for diagnostics
Kateryna Arkhypova, Pavlo Krasov, Anatolii Fisun, Andriy Nosatov, Volodymyr Lychko, Volodymyr Malakhov
Published online : 01-10-2017
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This paper deals with the concept of microliter sensing of human blood samples by waveguide dielectrometry at microwave frequency (39.5 GHz). The methods, research protocol, and basic results derived from the permittivity measurements are presented. Here we summarize the results of our 5-year research on developing a multidisciplinary approach to the characterization of erythrocytes dielectric res
A miniaturized dual-band ZOR antenna using epsilon negative transmission line loading
Ashish Gupta, Raghvendra Kumar Chaudhary
Published online : 01-10-2017
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A miniaturized dual-band CPW-fed metamaterial antenna is presented and developed in this paper. Zeroth-order mode is originated by realizing open-ended composite right/left-handed transmission line. A dual split ring resonator is introduced to obtain another mode. The antenna is operated in the frequency region 1.60?1.64 and 2.76?2.79 GHz. Shunt inductance is offered by means of thin stripline con
Planar high rejection dual band-notch UWB antenna with X & Ku-bands wireless applications
Manish Sharma, Yogendra Kumar Awasthi, Himanshu Singh
Published online : 01-10-2017
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In this paper, a vase-shaped monopole antenna is presented for dual band notch (WiMAX IEEE802.16 3.30?3.80 GHz with C-band 3.80?4.20 GHz and WLAN IEEE802.11a/h/j/n 5.15?5.35 GHz, 5.25?5.35 GHz, 5.47?5.725 GHz, 5.725?5.825 GHz) UWB and other wireless services (close range radar: 8?12 GHz in X-band & satellite communication: 12?18 GHz in Ku-band). Measured VSWR of proposed antenna shows a high band-
Miniaturized tri-band filtering-response power divider with short- and open-stub-loaded resonators
Zongrui He, Kaijun Song, Bo Zeng, Yu Zhu, Yong Fan
Published online : 01-10-2017
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A miniaturized tri-passband power divider integrating a power divider with two tri-band bandpass filters is presented. The short- and open-stub-loaded resonators are used in this presented power divider to implement the bandpass-filtering response. Then, the presented power divider has not only the power-dividing/combining function, but also the tri-passband filtering response. When the central fr
Perturbation theory-based field analysis of arbitrary-shaped microstrip patch antenna
Karishma Sharma, Dharmendra K. Upadhyay, Harish Parthasarathy
Published online : 01-10-2017
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In this paper, the concept of perturbation theory is applied to derive a general electric field (E-field) expression for any arbitrary-shaped microstrip patch antenna. The arbitrary shape is created by adding small perturbation in a regular patch shape, which is used to find perturbed and unperturbed electromagnetic wave solutions for resultant E-field of patch antenna. Ansoft HFSS simulator is us
A low phase noise and frequency agility synthesizer for millimeter-wave transceiver
Qianhua Fu
Published online : 01-10-2017
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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
Published online : 01-10-2017
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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
Published online : 01-10-2017
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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
Published online : 01-10-2017
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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
Published online : 01-10-2017
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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
Published online : 01-10-2017
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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
Published online : 01-10-2017
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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
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