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Compact QMSIW-based antenna with different resonant frequencies depending on loading of metalized vias
Divya Chaturvedi, Arvind Kumar, S. Raghavan
In this work, simple, low profile, compact quarter-mode substrate-integrated waveguide (QMSIW)-based antennas are proposed for Wireless Local Area Network (WLAN) at 5.2/5.5 GHz and Wireless Body Area Network (WBAN) at 5.8 GHz, respectively. By implementing QMSIW technique, the electrical size of the antenna is reduced up to 1/4th of the conventional circular SIW cavities. Thanks to the quarter mod
A printed multiband MIMO antenna with decoupling element
Ziyu Xu, Qisheng Zhang, Linyan Guo
A printed multiband Multi-Input Multiple-Output (MIMO) antenna is proposed in this paper. This MIMO antenna system comprises two symmetric printed monopole antennas. Each antenna element consists of multiple bend lines, producing four resonant modes and covering the GSM900, PCS, LTE2300, and 5G bands. Simulated and measured results prove that the proposed MIMO antenna can be applied to traditional
Compact low-cost substrate integrated waveguide fed antenna for 122 GHz radar applications
Martin Frank, Fabian Lurz, Robert Weigel, Alexander Koelpin
This paper describes the design and characterization of a compact substrate integrated waveguide (SIW) fed antenna for the 122 GHz industrial, scientific, and medical band. The use of a single RO4350B substrate layer and the SIW feeding ensure a low-cost fabrication. Two versions of the antenna are presented differing in antenna gain and size. For measurement purpose, a transition from rectangular
Design and analysis of a metamaterial inspired dual band antenna for WLAN application
Priyanka Garg, Priyanka Jain
In this paper, a compact, low-profile, coplanar waveguide-fed metamaterial inspired dual-band microstrip antenna is presented for Wireless Local Area Network (WLAN) application. To achieve the goal a triangular split ring resonator is used along with an open-ended stub. The proposed antenna has a compact size of 20 × 24 mm fabricated on an FR-4 epoxy substrate with dielectric constant () 4.4. The
Wideband radar cross section reduction of a microstrip antenna with square slots
Zhang Jiakai, Zheng Qi, Li Haixiong, Ding Jun, Guo Chenjiang
This paper proposes a new radar cross section (RCS) reduced microstrip antenna incorporating 475 square slots on the patch. The proposed antenna achieves wideband RCS reduction with radiation performance sustained. The modified and reference antenna are simulated and analyzed in radiating and scattering mode, respectively. Prototypes of two antennas are fabricated and measured. Compared with the r
High-efficiency AMC loaded dipole above FR4 substrate
Mohamed A.G. Elsheikh, Amr M.E. Safwat, Hadia Elhennawy
This paper presents a novel artificial magnetic conductor (AMC) loaded dipole above FR4 substrate. The proposed AMC consists of two metal layers that shield the wave from the lossy substrate leading to a significant increase in the dipole efficiency over a wide bandwidth. The dipole is fed through vias that are connected to a wideband balun placed on the opposite side of the ground plane. The prop
Investigation on the effects of resistive loading on wrapped bow-tie antennas
Doojin Lee, George Shaker, William Melek
The pulse radiating characteristic of a wrapped bow-tie antenna (WBA) and wrapped resistively loaded bow-tie antenna (WRLBA) is presented for impulse radar applications in this paper. The numerical analysis of the WRLBA is performed by comparing that of the WBA. The wrapped antennas are realized on a flexible substrate. The antennas are fed by an impedance tapered balun, which has an overall trans
Wideband tightly-coupled compact array of dipole antennas arranged in triangular lattice
Abhishek Kumar Awasthi, A. R. Harish
In this paper, a compact wideband tightly-coupled dipole antenna array has been developed. Dipole elements are placed in the triangular lattice to reduce the side lobe level in the radiation pattern of one of the planes. To obtain the initial dimensions, 1-D infinite array analysis of the proposed array is carried out. The infinite array is designed to operate in 5?14.3 GHz (96.3% impedance bandwi
Wide scanned electronically steered conformal active phased array antenna for Ku-band SATCOM
Raj Kumar, Pramendra Kumar Verma, Machavaram Venkateshwar Kartikeyan
The paper describes the design and development of a low profile wide scanned conformal active 1 × 32 phased array antenna for Ku-band SATCOM applications. The realized antenna is diagonally polarized and covers full transmit frequency band (i.e. 13.75?14.5 GHz) of Ku band SATCOM. All the developed sub-systems of the antenna, i.e. conformal radiating array, conformal transmit module, manifold netwo
Design of reconfigurable filtering ultra-wideband antenna with switchable band-notched functions
Hailong Yang, Xiaoli Xi, Lili Wang, Yuchen Zhao, Xiaomin Shi, Yanning Yuan
A compact reconfigurable filtering ultra-wideband (UWB) antenna with switchable band-notched functions is proposed. The basic structure of the proposed design is a filtering slot antenna with good band-edge selectivity using stepped impedance resonator feeding line. The reconfigurability is achieved by using two microstrip lines paralleling to the feeding line and two PIN diodes. The reconfigurabl
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