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

机译:SEOSAR / PAZ卫星的高速数据传输子系统

摘要

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.
机译:本文分析了SEOSAR / PAZ地球观测卫星的数字接口和总线系统建模和优化。卫星的重要部分是X波段合成孔径雷达仪器,该仪器集成了384个发射/接收模块,这些模块位于距离中央处理器7.5 m的12个天线面板中,并由同步10 Mbps双向串行协议控制。由于串扰,传输线衰减和阻抗不匹配,这种中距离的点对多点传输会受到误码的影响。高速数据通信网络旨在通过使用考虑最坏情况的数据分发系统的仿真模型并通过开发实验室规模的原型来优化传输,该原型的BER为10-11。 10 Vpp的干扰信号。结果是在两个方向上使用负载和均衡电阻的最佳值进行了优化的点对多点双向传输网络。这个高速数据传输子系统通过一个简单的解决方案提供了紧凑的设计。

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