卫星通信的twta:过去、现在和未来

Kevin P. Mallon
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引用次数: 13

摘要

地球同步通信卫星上的下行链路放大器需要在恶劣环境中运行,以延长任务寿命(长达20年),同时具有挑战性的性能参数和超高可靠性。近50年前,在太空时代诞生时,twta是系统设计师的唯一选择,能够为通信链路提供所需的功率/频率产品。这段历史与许多其他应用(雷达、电子对抗等)的历史相似。然而,最近的历史表明,卫星通信有效载荷架构继续在绝大多数下行链路放大器应用中使用twta,而许多其他类型的系统已经从twta转向备用放大器类型和/或架构。本次演讲将重点介绍现代空间合格twta的许多关键差异化能力,这些能力使它们能够在卫星通信有效载荷中保持和增长与固态放大器相比的竞争优势。这些差异值得所有需要微波放大的系统的设计者注意。
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TWTAs for Satellite communications: Past, present and future
Downlink amplifiers on geostationary communications satellites are required to operate in harsh environments for extended mission lifetimes (of up to 20 years) with a challenging combination of performance parameters and ultra-high reliability. TWTAs were the only option for systems designers nearly 50 years ago at the birth of the space age that were capable of providing the required power/frequency product for communications links. This history is similar to that of many other applications (radar, ECM, etc.). More recent history, however, shows that satellite communications payload architecture continues to use TWTAs for the vast majority of downlink amplifier applications while many other types of systems have moved away from TWTAs into alternate amplifier types and/or architectures. This presentation will highlight many of the key differentiating capabilities of modern space qualified TWTAs that have enabled them to maintain and grow a competitive advantage versus solidstate amplifier in satellite communications payloads. These differences are worth noting by designers of all types of systems requiring microwave amplification.
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