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1.
Sensors (Basel) ; 13(3): 3204-16, 2013 Mar 06.
Artigo em Inglês | MEDLINE | ID: mdl-23467032

RESUMO

This paper describes a pair of compact CW/FM airborne SAR systems for small UAV-based operation (wingspan of 3.5 m) for low-cost testing of innovative SAR concepts. Two different SAR instruments, using the C and X bands, have been developed in the context of the ARBRES project, each of them achieving a payload weight below 5 Kg and a volume of 13.5 dm3 (sensor and controller). Every system has a dual receiving channel which allows operation in interferometric or polarimetric modes. Planar printed array antennas are used in both sensors for easy system integration and better isolation between transmitter and receiver subsystems. First experimental tests on board a 3.2 m wingspan commercial radio-controlled aircraft are presented. The SAR images of a field close to an urban area have been focused using a back-projection algorithm. Using the dual channel capability, a single pass interferogram and Digital Elevation Model (DEM) has been obtained which agrees with the scene topography. A simple Motion Compensation (MoCo) module, based on the information from an Inertial+GPS unit, has been included to compensate platform motion errors with respect to the nominal straight trajectory.


Assuntos
Aeronaves , Monitoramento Ambiental , Interferometria , Algoritmos , Sistemas de Informação Geográfica , Humanos , Interferometria/instrumentação , Interferometria/métodos , Movimento (Física)
2.
Sensors (Basel) ; 12(12): 16228-49, 2012 Nov 23.
Artigo em Inglês | MEDLINE | ID: mdl-23443376

RESUMO

The paper presents a two-step technique for real-time track detection in single-track railway sidings using low-cost MEMS gyroscopes. The objective is to reliably know the path the train has taken in a switch, diverted or main road, immediately after the train head leaves the switch. The signal delivered by the gyroscope is first processed by an adaptive low-pass filter that rejects noise and converts the temporal turn rate data in degree/second units into spatial turn rate data in degree/meter. The conversion is based on the travelled distance taken from odometer data. The filter is implemented to achieve a speed-dependent cut-off frequency to maximize the signal-to-noise ratio. Although direct comparison of the filtered turn rate signal with a predetermined threshold is possible, the paper shows that better detection performance can be achieved by processing the turn rate signal with a filter matched to the rail switch curvature parameters. Implementation aspects of the track detector have been optimized for real-time operation. The detector has been tested with both simulated data and real data acquired in railway campaigns.


Assuntos
Automóveis , Sistemas Microeletromecânicos/instrumentação , Algoritmos , Humanos , Ferrovias , Processamento de Sinais Assistido por Computador , Razão Sinal-Ruído
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