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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Ultra-High Power and Efficiency Space Traveling-Wave Tube Amplifier Power Combiner With Reduced Size and Mass for NASA Missions
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Ultra-High Power and Efficiency Space Traveling-Wave Tube Amplifier Power Combiner With Reduced Size and Mass for NASA Missions

机译:体积小巧,质量轻巧的超高功率,高效率太空行波管放大器功率合成器

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摘要

In the 2008 IEEE Microwave Theory and Techniques Society International Microwave Symposium Digest version of our paper, recent advances in high power and efficiency space traveling-wave tube amplifiers for NASA's space-to-Earth communications are presented. The RF power and efficiency of a new $K$-band amplifier are 40 W and 50% and that of a new $Ka$-band amplifier are 200 W and 60%. An important figure-of-merit, which is defined as the ratio of the RF power output to the mass (W/kg) of a traveling-wave tube (TWT), has improved by a factor of 10 over the previous generation $Ka$-band devices. In this paper, a high power high efficiency $Ka$ -band combiner for multiple TWTs, based on a novel hybrid magic-T waveguide circuit design, is presented. The measured combiner efficiency is as high as 90%. In addition, at the design frequency of 32.05 GHz, error-free uncoded binary phase-shift keying/quadrature phase-shift keying (QPSK) data transmission at 8 Mb/s, which is typical for deep-space communications, is demonstrated. Furthermore, QPSK data transmission at 622 Mb/s is demonstrated with a low bit error rate of ${hbox{2.4}}times {hbox{10}}^{-8}$, which exceeds the deep-space state-of-the-art data rate transmission capability by more than two orders of magnitude. A potential application of the TWT combiner is in deep-space communication systems for planetary exploration requiring transmitter power on the order of a kilowatt or higher.
机译:在我们论文的2008 IEEE微波理论与技术学会国际微波研讨会摘要中,介绍了用于NASA的空对地通信的高功率和高效率空间行波管放大器的最新进展。新型$ K $波段放大器的RF功率和效率分别为40 W和50%,而新型$ Ka $波段放大器的RF功率和效率为200 W和60%。一个重要的品质因数,它定义为射频功率输出与行波管(TWT)的质量(W / kg)之比,比上一代$ Ka提高了10倍。 $带设备。在本文中,提出了一种基于新型混合式Magic-T波导电路设计的,用于多个TWT的高功率高效率$ Ka $频段组合器。测得的合成器效率高达90%。另外,在32.05 GHz的设计频率上,演示了无误码的二进制编码的相移键控/正交相移键控(QPSK)数据传输,速率为8 Mb / s,这是深空通信的典型特征。此外,以$ {hbox {2.4}}乘以{hbox {10}} ^ {-8} $的低误码率证明了622 Mb / s的QPSK数据传输,这超出了深空状态。最新的数据速率传输能力超过两个数量级。 TWT合路器的潜在应用是在深空通信系统中进行行星探测,要求发射机功率在千瓦或更高级别。

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