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A four-port wideband filtering monopole MIMO array for sub-6 GHz 5G communications
Jasmine Vijithra Ayyappan, Gulam Nabi Alsath Mohammed, Sangeetha Subbaraj
This communication presents the significance of a four-port 2×2 multiple input multiple output antenna operating in mid-band frequency for 5G handheld device application. A microstrip-fed reference truncated decagonal monopole antenna operating at 3.9 GHz and a modified split-ring resonator (SRR)-based low-pass filter that excites at a cut-off frequency of 6.5 GHz are designed. On introducing a st
Flexible SIW humidity sensors based on nanodiamond sensing films
Chang-ming Chen, Lu Chen, Yao Yao, Ye Peng
In this paper, flexible substrate integrated waveguide (SIW) resonators have been designed and fabricated on polyimide substrates for humidity sensing applications. The proposed SIW resonant cavity allows the resonator to obtain the maximum humidity sensitivity and meet the demand for flexible microwave sensing detection. Meanwhile, the humidity response performance can be further significantly en
A novel wearable monopole antenna with controlled SAR using metamaterial
K. Ramasamy, B. A. Sapna, M. Jayasheela
This article presents a flexible wearable KIT monopole antenna for biomedical application. A metamaterial unit cell is proposed to improve the antenna performance. The proposed antenna and the metamaterial are fabricated on 1 mm-thick polydimethylsiloxane substrate to operate in the ISM frequency band of 2.45 GHz. Integration of the metamaterial improves the gain and reduces the specific absorptio
Design of a wideband highly efficient GaN HEMT power amplifier for multiband applications
Xuefei Xuan, Zhiqun Cheng, Zhiwei Zhang, Tingwei Gong, Chao Le
A distributed basic matching network (MN) designed method that can achieve multioctave bandwidth and highly efficient power amplifier (PA) for multiband applications is presented in this letter. The distributed network unit with a left-rotating T-type structure is employed to construct the wideband MN, whose topology and circuit parameters are acquired through optimization. Finally, the impedance
Magnetically tuned SIW patch antenna based on nematic liquid crystal for 5G applications and satellite communication systems
Adel Kouki, Fakher Sboui, Lassaad Latrach
This paper presents a new design of a reconfigurable miscrostrip patch antenna based on a substrate-integrated waveguide (SIW). The antenna is resonant at the millimeter-wave (mmWave) 5G spectrum. The tuning technique consists of using a nematic liquid crystal (K15). An adjustable frequency band from 30.191 to 32 GHz is obtained, giving a tunable range of ?fr = 1.809 GHz. The maximum gain and effi
Four ports MIMO printed antenna with high isolation for UWB and X-band systems
Ahmed A. Ibrahim, Amira Eltokhy, Ahmed Fawzy Daw
In this work, a compact size 4 ports multiple input multiple output (MIMO) slot antenna with the connected ground for Ultra-Wide Band (UWB) and X band applications is introduced and discussed. The single antenna is a cross-shaped slot antenna in the ground plane and a 50 ? microstrip line with a small L-stub is used to feed the antenna on the other side. The suggested MIMO antenna has four identic
Compact modified hourglass-shaped aperture-coupled antenna for radar applications
P. Priyalatha, Runa Kumari, Sourav Nandi
This paper furnishes a compact modified hourglass-shaped aperture-coupled antenna for radar applications. The effect of slots of various shapes and various slot lengths on the input impedance, radiation pattern, and gain of the antenna are analyzed. The proposed antenna, designed using a modified hourglass-shaped aperture, offers a gain of 8.214 dBi for an compact antenna with a dimension of 20.4
A broadband Butler-based dual-polarized omni-directional antenna
Xiaoqing Wu, Lin-Ping Shen, Lijun Zhang
This paper presents a broadband Butler-based slant ±45° dual-polarized omni-directional antenna working at the frequency band of 1.69?2.69 GHz for extending wireless communication network capacity in the limited service size. The proposed antenna realizes a 360° full coverage with wider bandwidth in a compact cylinder and increases the network capacity to 6 × 6 MIMO instead of using three traditio
A compact quasi-Yagi antenna for FMCW radar-on-chip-based through-wall imaging
Anand Kumar, Easha Easha, Debdeep Sarkar, Gaurab Banerjee
A compact quasi-Yagi antenna with a modified ground plane is designed for a through-wall radar on-chip. A slot-based ground plane modification in the proposed antenna results in significant miniaturization with an increase in the impedance bandwidth by 44.62%. The antenna has a high directivity of 9.02 dBi and a front-to-back ratio of 25.76 dB at 2.4 GHz. Based on experiments in real-world deploym
A CPW-fed dual band four-port MIMO antenna based on liquid crystal polymer for flexible IoT applications
Jie Zhang, Chengzhu Du, Lingru Pei, Hongye Liu
A 2 × 2 dual band MIMO flexible antenna with a low profile and CPW feeding is designed for Internet of Things (IoT) domains, operating in 5G (3.3?3.6/4.8?5.0 GHz), WiMAX (5.25?5.85 GHz) and WLAN (5.15?5.35/5.725?5.825 GHz) bands. Two resonant frequencies are generated by -shaped branches and a rectangular monopole. The mentioned MIMO antenna comprises four elements arranged vertically. With the ad
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