Microwave-photonic technologies for satellite telecommunication payloads: a focus on photonic RF frequency conversion

Luca Rodio, V. Schena, M. Grande, G. Calò, A. D’orazio
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引用次数: 5

Abstract

The future generation of Very High Throughput Satellites (VHTS) for telecommunication purposes will bring a huge impact in terms of payload mass, volume and power consumption requirements in order to meet the increased capacity and achievable performance demand. The introduction of the photonic technology, which is already well developed for terrestrial networks, can represent one of the possible approaches to reduce the payload system complexity. This paper provides a brief overview on possible applications of microwave/photonic technologies to implement operations needed in a Satellite Communication (SATCOM) payload, focusing on advantages of Radio Frequency (RF) signal mixing in the photonic domain. A configuration scheme of a photonic RF mixer based on a dual port Mach-Zehnder Modulator (MZM) and two photonic local oscillators, used as RF downconverter, is presented and discussed.
卫星通信有效载荷的微波光子技术:聚焦于光子射频频率转换
未来一代用于电信目的的超高吞吐量卫星(VHTS)将在有效载荷质量、体积和功耗要求方面带来巨大影响,以满足增加的容量和可实现的性能需求。光子技术的引入已经在地面网络中得到了很好的发展,可以代表降低有效载荷系统复杂性的可能方法之一。本文简要概述了微波/光子技术在卫星通信(SATCOM)有效载荷中实现操作的可能应用,重点介绍了射频(RF)信号混合在光子领域的优势。提出并讨论了一种基于双端口马赫-曾德尔调制器(MZM)和两个光子本激子作为射频下变频器的光子射频混频器的配置方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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