High–Speed Data Transmission Subsystem of the SEOSAR/PAZ Satellite

This paper analyzes a digital interface and bus system modeling and optimization of the SEOSAR/PAZ Earth Observation satellite. The important part of the satellite is an X–band Synthetic Aperture Radar instrument that integrates 384 Transmit/Receive Modules located in 12 antenna panels 7.5 m away fr...

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Bibliographic Details
Main Authors: J. R. O. Fernandez, D. Draskovic, C. Briso–Rodriguez
Format: Article
Language:English
Published: Spolecnost pro radioelektronicke inzenyrstvi 2013-04-01
Series:Radioengineering
Subjects:
SAR
Online Access:http://www.radioeng.cz/fulltexts/2013/13_01_0394_0399.pdf
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spelling doaj-9d10241b2d974ea1be89d09e6ff87f562020-11-24T22:23:14ZengSpolecnost pro radioelektronicke inzenyrstviRadioengineering1210-25122013-04-01221394399High–Speed Data Transmission Subsystem of the SEOSAR/PAZ SatelliteJ. R. O. FernandezD. DraskovicC. Briso–RodriguezThis paper analyzes a digital interface and bus system modeling and optimization of the SEOSAR/PAZ Earth Observation satellite. The important part of the satellite is an X–band Synthetic Aperture Radar instrument that integrates 384 Transmit/Receive Modules located in 12 antenna panels 7.5 m away from the central processor and controlled by a synchronous 10 Mbps bidirectional serial protocol. This type of mid–range point–to–multipoint transmission is affected by bit errors due to crosstalk, transmission line attenuation and impedance mismatches. The high–speed data communication network has been designed to optimize the transmission by using a simulation model of the data distribution system which takes into account the worst–case scenario and by developing a lab–scaled prototype which exhibits BER of 10-11 for an interfering signal of 10 Vpp. The result is a point–to–multipoint bidirectional transmission network optimized in both directions with optimal values of loads and equalization resistors. This high–speed data transmission subsystem provides a compact design through a simple solution.www.radioeng.cz/fulltexts/2013/13_01_0394_0399.pdfCrosstalkdata buseshigh–speed communicationsSARsatelliteSEOSAR/PAZ
collection DOAJ
language English
format Article
sources DOAJ
author J. R. O. Fernandez
D. Draskovic
C. Briso–Rodriguez
spellingShingle J. R. O. Fernandez
D. Draskovic
C. Briso–Rodriguez
High–Speed Data Transmission Subsystem of the SEOSAR/PAZ Satellite
Radioengineering
Crosstalk
data buses
high–speed communications
SAR
satellite
SEOSAR/PAZ
author_facet J. R. O. Fernandez
D. Draskovic
C. Briso–Rodriguez
author_sort J. R. O. Fernandez
title High–Speed Data Transmission Subsystem of the SEOSAR/PAZ Satellite
title_short High–Speed Data Transmission Subsystem of the SEOSAR/PAZ Satellite
title_full High–Speed Data Transmission Subsystem of the SEOSAR/PAZ Satellite
title_fullStr High–Speed Data Transmission Subsystem of the SEOSAR/PAZ Satellite
title_full_unstemmed High–Speed Data Transmission Subsystem of the SEOSAR/PAZ Satellite
title_sort high–speed data transmission subsystem of the seosar/paz satellite
publisher Spolecnost pro radioelektronicke inzenyrstvi
series Radioengineering
issn 1210-2512
publishDate 2013-04-01
description This paper analyzes a digital interface and bus system modeling and optimization of the SEOSAR/PAZ Earth Observation satellite. The important part of the satellite is an X–band Synthetic Aperture Radar instrument that integrates 384 Transmit/Receive Modules located in 12 antenna panels 7.5 m away from the central processor and controlled by a synchronous 10 Mbps bidirectional serial protocol. This type of mid–range point–to–multipoint transmission is affected by bit errors due to crosstalk, transmission line attenuation and impedance mismatches. The high–speed data communication network has been designed to optimize the transmission by using a simulation model of the data distribution system which takes into account the worst–case scenario and by developing a lab–scaled prototype which exhibits BER of 10-11 for an interfering signal of 10 Vpp. The result is a point–to–multipoint bidirectional transmission network optimized in both directions with optimal values of loads and equalization resistors. This high–speed data transmission subsystem provides a compact design through a simple solution.
topic Crosstalk
data buses
high–speed communications
SAR
satellite
SEOSAR/PAZ
url http://www.radioeng.cz/fulltexts/2013/13_01_0394_0399.pdf
work_keys_str_mv AT jrofernandez highspeeddatatransmissionsubsystemoftheseosarpazsatellite
AT ddraskovic highspeeddatatransmissionsubsystemoftheseosarpazsatellite
AT cbrisorodriguez highspeeddatatransmissionsubsystemoftheseosarpazsatellite
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