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Study of receiver design in a MIMO SAR configuration

Author: Vishal Riché, Stéphane Méric, Éric Pottier

In this paper, we are concerned on the receiver design and the different imaging possibilities for radar multiple input multiple output (MIMO) synthetic aperture radar (SAR). The transmission of pseudo-orthogonal waveforms gives many opportunities in reception on how to manage these different signals. We proposed to compare different resolutions and robustness for SAR measurements: single input si

Guest Editorial, EuMW Special Issue

Author: Ian Robertson, Stepan Lucyszyn, Tony Brown

76.5 GHz millimeter-wave radar for foreign objects debris detection on airport runways

Author: Karim Mazouni, Armin Zeitler, Jérôme Lanteri, Christian Pichot, Jean-Yves Dauvignac, Claire Migliaccio, Naruto Yonemoto, Akiko Kohmura, Shunichi Futatsumori

The paper is a joint work between the LEAT (France) and the ENRI (Japan) in the framework of a Sakura project supported by the JSPS and the French Ministry of Foreign Affairs. The purpose is the study of a FOD (Foreign Object Debris) detection system on airport runways. An FM-CW mm-wave radar working between 76.25 and 76.75 GHz is used together with a high directivity printed reflectarray. In addi

Finite-element analysis of infinite and finite arrays

Author: John B. Manges, John W. Silvestro, Kezhong Zhao

This paper considers and compares the numerical characterization of regular planar antenna arrays from two viewpoints. In the case where the array is sufficiently large, the well-known infinite array idealization applies and a very efficient simulation method is presented which combines array theory with a specialized form of the finite-element method called the transfinite element method (TFEM).

A new methodology for optimal RF DFT sensor design

Author: Conrado K. Mesadri, Aziz Doukkali, Philippe Descamps, Christophe Kelma

In this paper, a new methodology to compare the robustness of sensor structures employed in radiofrequency design for test (RF DFT) architectures for RF integrated circuits (ICs) is proposed. First, the yield loss and defect level of the test technique is evaluated using a statistical model of the Circuit under Test (obtained through non-parametric statistics and copula theory). Then, by carrying

MRF volume 4 issue 3 Cover and Back matter

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MRF volume 4 issue 3 Cover and Front matter

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A new methodology for optimal RF DFT sensor design

Author: Conrado K. Mesadri, Aziz Doukkali, Philippe Descamps, Christophe Kelma

In this paper, a new methodology to compare the robustness of sensor structures employed in radiofrequency design for test (RF DFT) architectures for RF integrated circuits (ICs) is proposed. First, the yield loss and defect level of the test technique is evaluated using a statistical model of the Circuit under Test (obtained through non-parametric statistics and copula theory). Then, by carrying

Upgrade of the 88-Inch Cyclotron Power Amplifier

Author: Michel Kireeff Covo

The radiofrequency (RF) system of the 88-Inch Cyclotron at Lawrence Berkeley National Laboratory is a resonant system based on the quarter-wave cantilever-type resonating structure. Power is fed to the Dee from the anode of the 500 kW RCA 4648 tetrode tube operating in grounded cathode configuration, which is coupled to the side of the Dee stem. The tube is obsolete and makes its continued use imp

Upgrade of the 88-Inch Cyclotron Power Amplifier

Author: Michel Kireeff Covo

The radiofrequency (RF) system of the 88-Inch Cyclotron at Lawrence Berkeley National Laboratory is a resonant system based on the quarter-wave cantilever-type resonating structure. Power is fed to the Dee from the anode of the 500 kW RCA 4648 tetrode tube operating in grounded cathode configuration, which is coupled to the side of the Dee stem. The tube is obsolete and makes its continued use imp