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Radiometric calibration stability assessment of Sentinel-1B using point targets at Surat Basin, Australia
Sowkhya Badatala, Shweta Sharma, Saurabh Tripathi, Parul R. Patel, Aloke K. Mathur
The launch of the Sentinel-1B satellite in April 2016 completed the two-satellite synthetic aperture radar (SAR) constellation of the European Copernicus Sentinel-1 mission. The European Space Agency executed the calibration of this sensor during the commissioning phase and an independent calibration by the German Aerospace Center (DLR) in 2016. The calibration parameters must be monitored to asse
UWB antenna with novel FSS reflector for the enhancement of the gain and bandwidth
Rashmi A. Pandhare, Mahesh P. Abegaonkar, Chandresh Dhote
In this paper, a novel ultra-wide-band antenna backed by a suspended ground for an enhancement of bandwidth and a frequency selective surface (FSS) reflector for the enhancement of gain is proposed in order to meet the specific coverage requirements for broadband applications. The impedance bandwidth of the proposed antenna is 13.4 GHz (1.8?15.2 GHz). To enhance the gain of the antenna, a FSS refl
A compact dual band MIMO antenna for 5G/WLAN applications
Gui Liu, Chuanba Zhang, Zhuoni Chen, Bo Chen
To satisfy the increasing requirements of wireless communication, a compact dual band MIMO antenna is presented in this paper. The presented antenna consists of two symmetric radiating elements operating at both 3.5 and 4.5 GHz bands. To enhance the isolation between the two radiating elements, an -shaped decoupling structure is introduced. The measured ?10 dB reflection coefficients frequency ban
Design of dual-polarized triple-band concentric annular-ring microstrip patch antenna for GPS applications
Surya Deo Choudhary, Shilpee Patil, Alka Verma, Md Irshad Alam, Vinod M. Kapse, Binod Kumar Kanaujia
A triple-frequency operated concentric annular ring microstrip antenna which is single fed is presented. The proposed antenna with three concentric annular rings and two symmetrical notches on its outer ring and having a cross slot in its ground surface shows triple band at resonance frequency 1.22760, 1.57542, and 2.18 GHz, respectively. At the first two bands (GPS L2 and GPS L1), circular polari
FDA-MIMO for target localization via multi-pulse tensor decomposition
Yibin Liu, Chunyang Wang, Jian Gong, Ming Tan
By combining multiple input multiple output (MIMO) technology and multiple matched filters with frequency diverse array (FDA), FDA-MIMO radar can be used to achieve two-dimensional target localization with range and angle. In this paper, we propose two FDA-MIMO multi-pulse target localization methods based on tensor decomposition. Based on the canonical polyadic decomposition theory, the signal mo
Design of ultra-compact ISM band implantable patch antenna for bio-medical applications
Ahmed Z. A. Zaki, Ehab K. I. Hamad, Tamer Gaber Abouelnaga, Hala A. Elsadek
In this paper, an ultra-compact implantable antenna for biomedical applications is proposed. The proposed implanted meandered compact patch antenna is implanted inside the body at a depth of 2 mm. The proposed antenna was designed with Roger RO3003 ( = 3) as substrate with an overall size of dimensions 5 × 5 × 0.26 mm. The radiating element is a square patch antenna with different size rectangular
Design and implementation of compact tri- and quad-band SIW power divider using modified circular complementary split-ring resonators
Tharani Duraisamy, Selvajyothi Kamakshy, Karthikeyan Sholampettai Subramanian, Rusan Kumar Barik, Qingsha S. Cheng
This paper presents a miniaturized tri- and quad-band power divider (PD)based on substrate integrated waveguide (SIW). By adopting different types of modified circular complementary split-ring resonators on the top surface of SIW, multiple passbands are generated propagating below the SIW cut-off frequency. The working principle is based on evanescent mode propagation that decreases the operating
Isolation enhancement of metamaterial structure MIMO antenna for WiMAX/WLAN/ITU band applications
Pasumarthi Suneetha, Kethavathu Srinivasa Naik, Pachiyannan Muthusamy
The -negative metamaterial (MNG) two-element MIMO antenna design was proposed in this article for WiMAX (2.5?2.8 GHz), WLAN (3.2?5.9 GHz), and ITU band (8.15?8.25 GHz) applications. The first design of the MIMO antenna operates at 2.7 and 4.9 GHz frequencies. In order to reduce the mutual coupling, a defective ground structure is used. For further isolation improvement, an MNG unit cell is placed
Compact, flexible and highly selective wideband complementary FSS with high angular stability
Srimita Coomar, Santanu Mondal, Rajarshi Sanyal
This article presents a novel miniaturized (0.105 × 0.105) flexible complementary frequency selective surfaces (CFSS) structure with sharp band edge selectivity and very high angular stability. To explore two diverse applications as a passband and stopband filter, a novel complementary convoluted square loop (CCSL) type structure has been designed and investigated on ultrathin dielectric material
Hyperparameters optimization of neural network using improved particle swarm optimization for modeling of electromagnetic inverse problems
Debanjali Sarkar, Taimoor Khan, Fazal Ahmed Talukdar
Optimization of hyperparameters of artificial neural network (ANN) usually involves a trial and error approach which is not only computationally expensive but also fails to predict a near-optimal solution most of the time. To design a better optimized ANN model, evolutionary algorithms are widely utilized to determine hyperparameters. This work proposes hyperparameters optimization of the ANN mode
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