Multipactor is an electron resonance phenomenon which occurs at radio frequencies in components and transmission lines operating in vacuum. Multipactor represents a possible payload failure mechanism for communications satellites since it can destroy RF components or transmission lines, or it can significantly raise noise levels. The Telstar 4 series of spacecraft presently being built for AT&T by Martin Marietta will carry 24 high-power transponders for Ku-band (/spl sim/60 W/transponder) and 24 medium-power transponders for C-band (/spl sim/25 W/transponder). The outputs of a number of transponders are frequency multiplexed prior to being input to the Ku-band or C-band antenna feed networks (AFN). Computation shows that instantaneous peak powers due to the combined signals can reach 4500 W at Ku-band and 3900 W at C-band. For the purpose of ensuring that the AFN would not suffer multipactor breakdown in orbit, each of the individual components in the C-band and Ku-band AFN were subjected to instantaneous peak powers well in excess of that which will be experienced in space. The high instantaneous peak powers required for this pre-flight testing were realized by phasor addition of the high-VSWR standing waves of two diplexed carriers of slightly different frequencies. This technique effectively provided an instantaneous peak power 32 times the average power output of each of the two input carriers. Test sets to accomplish this were constructed at both C-band and Ku-band. The ability to detect multipactor (by two independent means) was assured by measuring test cells which were specifically designed to break down for the test levels previously mentioned. Investigations of the separate AFN components for the Telstar 4 spacecraft showed that all components passed with substantial margin.
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机译:Multipactor是一种电子共振现象,发生在真空中运行的组件和传输线中的射频下。 Multipactor代表了通信卫星可能出现的有效载荷失效机制,因为它会破坏RF组件或传输线,或者会显着提高噪声水平。马丁·玛丽埃塔(Martin Marietta)目前为AT&T制造的Telstar 4系列航天器将搭载24个用于Ku频段的高功率转发器(/ spl sim / 60 W /转发器)和24个用于C频段的中功率转发器(/ spl sim / 25 W /转发器)。在将多个转发器的输出输入到Ku波段或C波段天线馈电网络(AFN)之前,先对其进行频率复用。计算表明,由于合并后的信号,瞬时峰值功率在Ku频段可以达到4500 W,在C频段可以达到3900W。为了确保AFN不会在轨道上遭受多导击穿,C波段和Ku波段AFN中的每个单独分量承受的瞬时峰值功率都远远超过在太空中会遇到的峰值功率。飞行前测试所需的高瞬时峰值功率是通过相量相加两个频率稍有不同的双工载波的高驻波比驻波来实现的。该技术有效地提供了瞬时峰值功率,该峰值功率是两个输入载波中每一个的平均功率输出的32倍。为此,在C波段和Ku波段都构建了测试集。通过测量专门设计用于分解前面提到的测试水平的测试电池,可以确保检测多乳头的能力(通过两种独立的方式)。对Telstar 4航天器的独立AFN组件进行的调查显示,所有组件均以相当大的幅度通过。
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