5G ANTENNA IEEE PAPERS-2020






Ultra-wideband Microstrip Array Antenna for 5G Millimeter-wave Applications
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In this paper, a design of ultra-wideband microstrip array antenna using a stepped line cut and U-slot combination for 5G millimeter-wave applications is proposed. The feeding technique used in the proposed design is a proximity coupling technique to improve

S-band testbed for 5g epidermal rfids
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GHz to optimize the antenna response when it is placed onto different materials. A frequency shift is observed when removing either 3 or 4 vias per side on the patch antenna placed in free-space. 5GRFID Tag Antenna Page 12. E P L Tx P out USRP P r Rx P tag Modulator

Gain-Enhanced Metamaterial Based Antenna for 5G Communication Standards
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Metamaterial surfaces play a vital role to achieve the surface waves suppression and in- phase reflection, in order to improve the antenna performance. In this paper, the performance comparison of a fifth generation ( 5G ) antenna design is analyzed and In this paper the conventional circular patch has been reshaped by two circular arcs with the FR4 Epoxy material for substrate. This is supported by the mathematical calculations of resonant frequencies with the help of Bressels function. The proposed antenna has been An increase in the network interconnection has been observed across the world because of multimedia applications and services transmission over the Internet. Nonetheless, a huge number of homes are still experiencing irregular or no broadband connections. Fixed

A Triple-Band Antenna Loaded with Reflector Surface for WLAN and 5G Applications
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In this paper, a novel triple-band antenna with reflector surface which has the property of both artificial magnetic conductor (AMC) surface and perfect electric conductor (PEC) for WLAN and Sub-6G 5G applications is proposed. The presented antenna is composed of two

Wideband 8 8 patch antenna array for 5G wireless communications
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Over the last decades, the wireless communication industry has established from the 3G technology towards 4G; then now it is going towards the 5G technology for the highest data rate. Several countries have already deployed the 4 G (Long Term Evaluation-LTE)

Design of Massive Multiuser MIMO System to Mitigate Inter Antenna Interference and Multiuser Interference in 5G Wireless Networks
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Massive Multi-user Multiple Input Multiple Output (MU‒MIMO) system is aimed to improve throughput and spectral efficiency in 5G communication networks. Interantenna Interference (IAI) and Multi-user Interference (MUI) are two major factors that influence the performance

A Compact Spherical Dual-Polarized Antenna Array for 5G Wireless Communication
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Two novel dual-polarized antenna array units and a new method to fabricate compact spherical antenna array for 5G wireless channel characterization are proposed in this paper. The traditional planar metallic reflectors are replaced by polyhedral reflectors in our antenna

Smartphone Antenna Design Covering 2G~ 5G Mobile Terminals
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The demands of designing compact multi-band antennas to meet the growing requirements of integrating more wireless services in the narrow space of the mobile terminals are increased continuously. In order to meet this need, a multiband multiple-input multiple

PIFA Antenna Design for 5G Wireless Application
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NA Tomah, F Abd ALzahra, FM Ali Journal of Xian Shiyou University ISSN xisdxjxsu.asia A New Microstrip PIFA antenna is proposed for wireless applications. The proposed antenna structure is consisting of microstrip antenna with T shaped slots on the patch and two parallel slots in the ground for bandwidth enhancement. This antenna has been design

Antenna Design for Integration into Active Devices Targeting 5G and Beyond
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Antenna sizes are usually considerable fractions of their operating wavelength. In the case of horn antennas and arrays they can span for multiple wavelengths. Such leads to a noticeable mismatch between the natural trend of size reduction seen in the IC industry and

Multiband Microstrip Patch Antenna for 5G Wireless Communication
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In current times an immense proliferation occurred in the users density of wireless communication, not so far but in near past one channel was enough for the necessities of a single mobile user. Now even 4G technology is inadequate to deliver its clienteles a wider

Monopole Antenna on Transparent Substrate and Rectifier for Energy Harvesting Applications in 5G
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In line with the harvested energy required for the emerging 5G technology, this article proposes a planar monopole antenna and a rectifier. The proposed Coplanar Waveguide (CPW)-fed antenna is printable on a transparent Poly-Ethylene Terephthalate (PET)

Small-Clearance Phased Array Antenna Design with Miniaturized Elements for 5G Communications
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In this paper, highly miniaturized antenna elements arranged in a linear phased array form is introduced for fifth-generation ( 5G ) cellular communications. The configuration of the design is composed of eight compact folded-dipole in the xy plane located at the top portion The development of 5G Technology is aimed at increasing the current data rates existing in mobile communication. The existing 4G technology operates in the 2-8 GHz band and supports data rates of more than 20 Mbps while 3G, operating in the 1.8-2.5 GHz band

A Modified Design of Phased Array Antenna for UWB- 5G Cellular Communications
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In this paper, a compact design of antenna array with ultra-wideband (UWB) function is proposed for fifth-generation mobile wireless communications. The array is composed of eight compact modified dipole antenna radiators with directors that have been arranged in a

A Wideband Low-Profile Antenna for LTE/ 5G
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A wideband low-profile antenna for Long Term Evolution (LTE) and 5G technology is presented in this paper. It is designed to be mounted on a car roof underneath the shark-fin cover. Proposed antenna operates at a wide frequency range from 617 MHz to 5.5 GHz

Wearable Soft Grid Array Antenna for S-band 5G Communication
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Potential convergence of wearable and epidermal antennas for battery-less communication with the emerging 5G framework, boost the ultrafast and delay-free monitoring of biophysical parameters. 3.6 GHz epidermal antennas have already been demonstrated to

Exposure Assessment of a 5G indoor planar array antenna using Computational Dosimetry
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The following work is focused on the assessment of exposure levels in indoor environment, taking account the innovations of the upcoming 5G network technology. More in details, it was analyzed the exposure caused by a 5G access point in a room, modelled with an indoor

Metamaterial-inspired Flat- Antenna Design for 5G Small-cell Base-Stations Operating at 3.6 GHz
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In this paper, a flat-beamsteering antenna for 5G applications is being presented. The antenna designed to operate at 3.6 GHz ( 5G new radio (NR) frequency range 1 (FR1) band n78), presents a unique flat form factor which allows easy deployment and low visual impact

Defected Grounded Rectangular Patch Antenna with Rhombic-Shaped Slots for Early Phase 5G Applications
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This study presents a novel design of a rectangular patch antenna with rhombic shaped slots (RSS) on the radiating part and five additional slots on the ground plane to create defected ground structure. The first prototype is a conventional inset fed rectangular patch

Design Methods of MIMO Antenna for 5G New Radio Applications in Mobile Terminals-A Review
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The fifth generation ( 5G ) communication technology is the subject undergoing intense study for the worlds leading telecommunication companies. Antenna miniaturization designs made it possible to resonate them at higher frequencies, thus enabling the multiple (with

A Parabolic Torus Compact Antenna Test Range for 5G NR Massive MIMO OTA Multi-User Test Applications
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This paper presents a novel design for a compact antenna test range (CATR) that uses a parabolic toroid as the main reflector which possesses superior pseudo-plane wave scanning capabilities than existing comparable CATR designs. The wide-angle scanning

Omni-directional Antenna Array with Improved Gain for 5G Communication Systems
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An omni-directional antenna array with enhanced gain is presented in this paper. Designed in the 5G operating band of 25.92-29.12 GHz, the antenna exhibits a simulated average peak gain of 7dBi. It consists of 4 dipoles and a substrate integrated waveguide cavity. The This chapter focuses on the design of E-shaped dual bandMIMO antenna intended for 5G mobile applications. It operating at 3.3 GHz and 32 GHz. The antenna designed in this letter are different from traditional 5G antennas, the antenna of this paper is perpendicular to the

Millimeter-Wave Wide Scan Beam Steering 5G MIMO Antenna Array in Mobile Terminals
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(MIMO) millimeter-wave wide scan beam 5G antenna array for 28 GHz application in the mobile terminals is presented. The MIMO antennas operate in 25-30 GHz in the end-fire direction. The antenna array composed of eight-element tapered tilted dipole antennas. The

Microstrip patch antenna designed using frequency reconfigurability for 5G applications
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The presented work is a Y shaped mm-wave reconfigurable patch antenna suitable for satellite communication, millimeter wave energy harvesting, 5G generation wireless network and Radar. The frequency reconfigurability is achieved using 5 different resistors ie 100Ω

Mathematical Modelling on the Effects of Conductive Material and Substrate Thickness for Air Substrate Microstrip Patch Antenna .
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The effects of different thickness of conductive material and substrate on the antennas bandwidth, gain, and efficiency for 5G applications were studied A 5G antenna must have two distinct characteristics high gain and wide bandwidth

A Design of Beam-Steerable Antenna Array for Use in Future Mobile Handsets
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Fig. 6 Fundamental properties of the single-element antenna IV. CHARACTERISTICS OF THE BEAM-STEERABLE 5G ANTENNA ARRAY The schematic of the antenna array is displayed in Fig Fig. 9 S parameters of the designed 5G antenna

DESIGN OF 16 ELEMENT RECTANGULAR PATCH ANTENNA ARRAY FOR 5G APPLICATIONS
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This paper represents the plan of 16 element rectangular patch array antenna for 5G applications this gives a sensible transfer speed about 28 GHz. This is the most component of this course of action could be a rectangular fix receiving wire outlined on the Rogers

60 GHz Multi-Sector Antenna Array with Switchable Radiation-Beams for Small Cell 5G Networks
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A compact design of multi-sector patch antenna array for 60 GHz applications is presented and discussed in details. The proposed design combines five 1 8 linear patch antenna arrays, referred to as sectors, in a multi-sector configuration. The coaxial-fed radiation

A Novel Design of Frequency Reconfigurable Antenna for 5G Mobile Terminal Equipment
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The development of 5G New Radio (NR) is widely concerned. In order to solve the problem of working frequency band, a design scheme of frequency reconfigurable antenna module covering 3.5 GHz and 4.9 GHz frequency band is proposed in this paper. It can be applied to

ENGTL based antenna for Wi-Fi and 5G
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This article reported patch antenna functioning at Wi-Fi and 5G bands. Wi-Fi band (2.4 GHz) is obtained by loading Epsilon Negative Transmission Line (ENGTL) metamaterials into the patch radiating at 5G band (3.5 GHz). To acquire Circular Polarization (CP) at 5G bandA multiple-input-multiple-output (MIMO) antenna with orthogonal circular polarization (CP) is proposed in this paper with an intention to use the antenna in sub-6áGHz 5G applications. The single antenna consists of a radiating slot and feedáline. The non-uniform width

Compact Multiband CPW Fed Sub 6 GHz Frequency Reconfigurable Antenna for 5G and Specific UWB Applications
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This paper presents, a compact coplanar waveguide (CPW) fed frequency reconfigurable antenna integrated with PIN diode. The electrical length of the radiating patch is modified due to diode which acts as a switch in proposed antenna system with proper biasing circuit

Dual band hat fed antenna for 5G backhauling
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The need of higher data rates in mobile communication has accelerated the development of the fifth generation cellular network ( 5G ). Higher speed base stations set requirements for the backhauling system. Therefor, higher frequency bands have been allocated for this

Cavity Backed Patch-Slot Antenna for Lower Band 5G Communication
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A cavity-backed patch antenna covering two 5G frequency bands under 6 GHz range is proposed. Good performance is obtained by optimizing the geometry of a rectangular slot and the embedded rectangular patch as well as the supporting cavity. The impedance

A 28 GHz 2x2 antenna array with 10 beams using passive beamforming network
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Keywords 5G Antenna Array, passive beamforming network switched beams In , a two- dimensional beam scanning array antenna for 5G wireless communications is proposed, but simulation results are provided for only 4 beams

A Simple Planar Antenna for Sub-6 GHz Applications in 5G Mobile Terminals
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Abstract─ A simple planar antenna for sub-6 GHz applications in 5G mobile terminals is presented. The proposed antenna is composed of one multi-branch driven strip and three parasitic grounded strips, featuring simple design without using three-dimensional structure

A Novel Design of Compact 28 GHz Printed Wideband Antenna for 5G Applications
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In this antenna study, a compact thin profile wide band patch antenna is introduced for fifth generation. The overall dimensions of this compact antenna is 5 mm x 5.26 mm only, operating in the 28 GHz frequency in Ka-band. Built on the Rogers Rt/Duroid 5880 substrate

OLED Display-Integrated Optically Invisible Phased Arrays for Millimeter-Wave 5G Cellular Devices
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of 30 40 dB depending on the distance between the device and the users hand . Anti-reflective layer with grating strips has been proposed and added in the bezel area for co-locating mmWave 5G antenna arrays and LTE antennas in mobile terminals . However, this

MIMO Antennas for Future 5G Communications
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V. CONCLUSION The design of the seven-element 5G MIMO antenna is proposed in this paper 3090-3093. [16] W. Hong, K. Baek, and Y. Lee, ``Quantitative analysis of the effects of polarization and pattern reconguration for mmWave 5G mobile antenna prototypes, in Proc

Dual-band MIMO antenna system for next generation smartphone applications
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1278 1281 (2014) [17] Al-Yasir, Y. et al.: New radiation pattern-reconfigurable 60-GHz antenna for 5G communications. Modern Printed Circuit Antennas, IntechOpen (2019) [18] Y.Al-Yasir, et al.: A new polarization-reconfigurable antenna for 5G wireless communications

RESEAUX DU FUTUR: 5G ET AU-DELA
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Antenne ultra-large bande avec polarisation circulaire pour des applications 5G Ultra-Wideband Circularly Polarized Antenna for 5G Applications Mohamad Mantash1 A single feed dual-band circularly polarized millimeter-wave antenna for 5G communication , EuCAP, pp

FR4-PCB Smartphone Phased Array with Improved Performance for 5G Beam-Steering Applications
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Table 1. Final dimensions of the 5G antenna parameters. Param. sub W sub L sub h S W S L W L 1 W 1 L EuCAP 201 Switzerland (2016) Parchin, NO et al.: Reconfigurable phased array 5G smartphone antenna for cognitive cellular networks

Reconfigurable and MIMO antenna systems for mobile communications
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This thesis aims to solve the current challenges mentioned above by developing mm-Wave 5G antenna systems and in doing so makes three main contributions to the field of mm-Wave 5G antenna systems 59 Figure 5.3 The geometry of 5G antenna

A Statistical Estimation of 5G Massive MIMOs Exposure using Stochastic Geometry
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The paper investigates the effect of beamforming, and the effect of multi-user massive MIMO on the exposure of a 5G network. The massive MIMO antenna pattern distribution is obtained by fitting the radiation pattern obtained by running a large amount of channel simulations

Design and Investigation of Phased Array LTSA for Future 5G Smartphone
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8. It can be seen that the designed 5G antenna array offers good S-parameters with low mutual coupling characteristic and similar reflection coeficicnt of the single element LTSA Fig13. 5G antenna placements in data mode, (a) bottom and (b) top position. Fig13

Over-The-Air (OTA) Testing 5G Wirelesses Communications Systems
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One of the challenges in the research and development of 5G antenna systems is the performance evaluation methods. SectionII presents a critical review of different OTA methodologies; reverberation chamber, two stage methods and anechoic chamber method

On the Use of Substrate Integrated Waveguide Technology in the Radiating Section Design of Reconfigurable Phased Arrays for 5G Applications
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Professional, vol. 1 no. pp. 12- Jan.-Feb. 2017. R. Valkonen, Compact 28-GHz phased array antenna for 5G access IEEE/MTT-S International Microwave Symposium IMS, Philadelphia, PA, 201 pp. 1334-1337. K

RESEAUX DU FUTUR: 5G ET AU-DELA
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connector (see Fig 2 (a)). Figure 4 (a) Simulated return loss of the designed 5G antenna (b) Radiation pattern (IEEE Gain) in dBi 2.1 Design of the 5G backscattering communication based base station At the receiver side we

Photonically Enabled Metasurfaces for 5G
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We have proposed the conceptual design of a metasurface to be used as a reconfigurable antenna radiator in order to provide beam will focus on designing, fabricating and embedding the metasurface with the photonic generator and this will be tested using a 5G demonstrator

User body effects on mobile antennas and wireless systems of 5G communication
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Index Terms user body, 5G mobile, antenna antenna array, millimeter wave, MIMO However, jumping into the FR2 of 5G NR, it needs a throughfall study to understand how a user body interacts with the antenna and communication system at such a high spectrum

Millimeter Wave Communication for 5G : An Inclusive Survey
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Millimeter wave (mmWave) communication has emerged as one of the most promising technology for 5G due to the large and unexploited mmWave band ranging from 30 to 300 GHz . Owing to smaller wavelength of mmWave band, the large antenna arrays can be integrated(a) (b) (c) (d) Fig. 2 Geometrical configuration of proposed 5G antenna a isometric view, b top view, c side view, and d photograph of fabricated prototype Table 1 Optimized dimensions of the proposed antenna prototype (units in mm) Parameter W L WP LP DP WS LS

A Novel Negative Meander Line Design of Microstrip Antenna for 28 GHz mmWave Wireless Communications
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A compact 5G antenna printed on manganese zinc ferrite substrate material. IEICE Electronics Express, 201 vol. 1 no His research interests include 5G antenna dielectric characterization, dielectric resonator antenna design, and optimization of antenna designABSTRACT The proposed antenna is presented for the 5G wireless communication by using DGS technique 335 349. Jilani, SF, Alomainy, A. Millimetre-wave T-shaped MIMO antenna with defected ground structures for 5G cellular networks

Frequency Reconfigurable Endfire Vertical Polarized Array for 5G Handset Applications
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1 3. R. Rodriguez-Cano, S. Zhang, K. Zhao, and GF Pedersen, Reduc- tion of main beam-blockage in an integrated 5g array with a metal- frame antenna IEEE Transactions on Antennas and Propagation, vol. 6 no. pp. 3161 3170,

Simulations and Measurements of the Effect of Beam Sweeping in the EMF level in 5G Communication Systems
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Figure 3. The figure shows the position of the 5G Base Station antenna the position of the measurement point (P1) and the set of simulated antenna beams (beams numbered from 0 to 5). tion and the user: sharing the available frequency band, or sharing the available time slot

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