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SAR and thermal distribution of pregnant woman and child inside elevator cabin
Ioanna Karatsi, Sofia Bakogianni, Stavros Koulouridis
A detailed dosimetry study of electromagnetic absorption and temperature rise under real scenarios is delivered when a mobile phone is used inside an elevator cabin. Numerically accurate human models of a 7 month pregnant woman and a 5-year-old female child are utilized as the exposed subjects. The female child acts as the phone user. The mobile phone is modeled in three talk positions (parallel,
A triple-band dual-fed frequency-flexible SIW cavity-backed slot antenna
Ayman A. Althuwayb, Divya Chaturvedi
This article presents a novel dual-fed triple-frequency bands antenna using quarter-mode (QM)/ Eight-mode (EM) substrate integrated waveguide (SIW) cavity resonators. A V-shaped slot is etched into the patch to divide the half-mode cavity into one QM and two EM cavities. One section of the EM cavity and QM cavity are excited with the help of individual micro-strip feedlines. This configuration yie
Design and analysis of UWB antenna with quintuple band-notched and wide-band rejection characteristics
Hailong Yang, Jinsheng Zhang, Xuping Li, Yapeng Li, Junhua Yang, Xiaomin Shi
In this study, a compact ultra-wideband (UWB) antenna with quintuple band-notched and wide-band rejection characteristics is studied. The proposed antenna mainly consists of a rectangular radiating patch, a microstrip feeding line, and a modified rectangular ground plane. The quintuple band-notched functions with narrow stop bands are achieved at WiMAX (3.3?3.7 GHz), WLAN (5.15?5.35 GHz and 5.725?
Broadband millimeter-wave absorbers: a review
Anupriya Choudhary, Srikanta Pal, Gautam Sarkhel
This paper reports an exhaustive review of recent research progress in the development of millimeter-wave absorbers. With the advancement in technologies, microwave absorbers have shown their evolution in several applications such as defense, security identification, stealth technology, and several more. The importance of these absorbers is increasing due to electromagnetic interference (EMI) effe
Dielectric resonator-based two-port filtennas with pattern and space diversity for 5G IoT applications
Darshika Sharma, Rishika Katiyar, Ajay Kumar Dwivedi, K.N. Nagesh, Anand Sharma, Pinku Ranjan
This paper describes a multiple-input multiple-output (MIMO) antenna for low millimeter (mm)-wave applications based on dielectric resonators. This is the first time that a filtering response is used in conjunction with an MIMO antenna operating at a low mm-wave frequency. The antenna is simulated using an asymmetrical U-shaped aperture and a microstrip line feed. The suggested filtenna has two di
Design of monopole antennas based on progressive Gaussian process
Xie Zheng, Fei Meng, Yubo Tian, Xinyu Zhang
Electromagnetic simulation software has become an important tool for antenna design. However, high-fidelity simulation of wideband or ultra-wideband antennas is very expensive. Therefore, antenna optimization design by using an electromagnetic solver may be limited due to its high computational cost. This problem can be alleviated by the utilization of fast and accurate surrogate models. Unfortuna
MRF volume 15 issue 1 Cover and Back matter
Oscar Quevedo-Teruel, Manuel Sierra Castañer, Stefania Monni
MRF volume 15 issue 1 Cover and Front matter
Oscar Quevedo-Teruel, Manuel Sierra Castañer, Stefania Monni
EuCAP 2021 special issue
Oscar Quevedo-Teruel, Manuel Sierra Castañer, Stefania Monni
Active 5G radio resource management measurements using a multiple CATR reflector system
Corbett Rowell, Adrian Cardalda Garcia, Benoit Derat
This paper presents results for active and passive measurements using a novel method based on multiple compact antenna test range (CATR) reflectors to perform simultaneous multiple angle measurements in order to characterize the beam-forming characteristics in a real environment of the 5G devices operating in the millimeter wave frequency band: 24?44 GHz. The over-the-air (OTA) system generates fo
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