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Compact multi-band printed antenna with multi-triangular ground plane for WLAN/WiMAX/RFID applications
Tang Yang, Gao Wen, Gao Jinsong, Feng Xiaoguo
In this paper a novel compact multi-band printed coplanar waveguide (CPW)-feed antenna for wireless local area network (WLAN)/WiMAX/RFID applications is proposed. The proposed antenna is composed of a multi-triangular structure as metal ground plane and the radiation element with four different branches, both of the structures are printed on the same side of a substrate and the antenna is fed by a
New low-cost broadband CPW-fed planar antenna
Rachid Dakir, Jamal Zbitou, Ahmed Mouhsen, Abdelwahed Tribak, Amediavilla Sanchez, Mohamed Latrach
The narrow bandwidth of microstrip antennas is one of the most important features that restrict its wide usage. This paper presents a new coplanar waveguide-fed compact rectangular microstrip antenna with the improvement of the bandwidth using the slot geometry and cutting rectangular periodic edges for the patch radiator. To develop this structure, we have conducted many optimization and investig
Cantor fractal-based printed slot antenna for dual-band wireless applications
Jawad Ali, Seevan Abdulkareem, Ali Hammoodi, Ali Salim, Mahmood Yassen, Mohammed Hussan, Hussain Al-Rizzo
Fractal geometries are attractive for antenna designers seeking antennas with compact size and multiband resonant behavior. This paper presents the design of a new microstrip-fed printed slot antenna for use in dual-band wireless applications. The slot structure of the proposed antenna is in the form of Cantor square fractal geometry of the second iteration. The slot structure has been etched on t
Enhancing RF-to-DC conversion efficiency of wideband RF energy harvesters using multi-tone optimization technique
Véronique Kuhn, Fabrice Seguin, Cyril Lahuec, Christian Person
In this paper, a 1.8?2.6 GHz wideband rectenna is designed for radio frequency (RF) energy harvesting in the context of wireless sensor nodes (WSN). To assess the feasibility of ambient RF energy harvesting, the power density from RF base stations is analyzed through statistical measurements. Power density measurements are also performed close to Wi-Fi routers. Using these results, a methodology b
CPW-fed printed UWB antenna with open-loop inverted triangular-shaped slot for WLAN band filtering
Majid Shokri, Vahid Rafii, Saeid Karamzadeh, Zhaleh Amiri, Bal Virdee
A compact CPW-fed printed monopole slot antenna is presented for ultra-wideband (UWB) applications. The antenna comprises of a dome-shaped radiating element in which embedded is an open-loop inverted triangular-shaped slot (TSS). The antenna is fed through a coplanar waveguide to provide an ultra-wide impedance bandwidth of 8.95 GHz (2.58?11.53 GHz) which corresponds to a bandwidth ratio of 1:4.46
Analysis of elliptical-disk microstrip patch printed on isotropic or anisotropic substrate materials
Randa Bedra, Sami Bedra, Tarek Fortaki
This paper presents a simple approach for accurate determination of the resonant frequency of an elliptical microstrip patch printed on isotropic or anisotropic substrate materials. In this approach, some modifications are made to account for fringe fields, dispersion effects, and losses by calculating effective dimensions, effective permittivity of anisotropy in the layer, and effective loss tang
Reactive impedance surface-based broadband circularly polarized Koch fractal boundary microstrip antenna
V. V. Reddy, N.V.S.N. Sarma
A circularly polarized (CP) broadband antenna is proposed for wireless applications in the range of 2?3 GHz frequency. It consists of asymmetrical Koch fractal boundary patch over a reactive impedance surface (RIS) substrate. The simulations of single-layer Koch fractal antenna, dual layer with square and fractal RIS elements are carried out in a systematic way for broadband CP radiation and corre
Bandwidth enhancement of a planar monopole microstrip patch antenna
Sudeep Baudha, Dinesh Kumar Vishwakarma
This paper presents a simple broadband planar monopole microstrip patch antenna with curved slot and partial ground plane. The proposed antenna is designed and fabricated on commercially available FR4 material with ? = 4.3 and 0.025 loss tangent. Bandwidth enhancement has been achieved by introducing a curved slot in the patch and optimizing the gap between the patch and the partial ground plane a
A true-time-delay networks design technique
Alberto Leggieri, Davide Passi, Franco Di Paolo
This paper proposes a technique to design wide band switched-line (SL) true-time-delay (TTD) networks, commonly used for phased array antenna (PAA) applications. This study investigates the constant-delay behavior of switched-line phase shifters based on single-pole double-throw (SPDT) switches. Circuit sizing starts by considering the effective S-parameters of the switches, to use their non-ideal
Novel stacked -negative material-loaded antenna for satellite applications
Trushit K. Upadhyaya, Shiv Prasad Kosta, Rajeev Jyoti, Merih Palandöken
An engineered novel tunable dual-band metamaterial antenna based on stacked split ring resonator (SRR) array is presented. The ?-negative SRR array present at two sublayers of stacked microstrip patch antenna substrate adds tuning capability to the antenna with marginal trade-off between antenna gain and cross-polarization. If the size of resonator element is considerably smaller than resonance wa
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