Optimization Of Q/V-Band Smart Gateway Switching In The Framework Of Q/V-Lift Project

2019 IEEE AEROSPACE CONFERENCE(2019)

引用 4|浏览15
暂无评分
摘要
High Throughput Satellite systems are expected to reach the milestone of terabit/s capacity in few years through the exploitation of Extremely High Frequencies (EHF), in particular Q/V-bands and W-band, in the feeder link. In this respect, the H2020 QV-LIFT project, kicked-off in November 2016, aims at filling crucial gaps in the ground segment technology required by future Q/V-band HTS systems. One of the most challenging objectives of QV-LIFT team is develop and test a smart gateway management system (SGMS) operating in the Q/V-band. The SGMS will implement fade mitigation techniques able to counteract the detrimental propagation impairments across the feeder link. This paper reports the optimization and simulation activities that have been performed to design SMGS control logic, with a focus on the atmospheric channel predictor and switching decision algorithm. The channel is fully characterized by synthetic time series of rain attenuation generated by a Multi-site Time-series Synthesizer (MTS).
更多
查看译文
关键词
fade mitigation techniques,feeder link,atmospheric channel predictor,switching decision algorithm,Q/V-band smart gateway switching,H2020 QV-LIFT project,ground segment technology,smart gateway management system,propagation impairments,SMGS control logic,synthetic time series,rain attenuation,multisite time-series synthesizer
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要