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TRANSMITTER MICRODISCHARGES IN COMMUNICATIONS AND BROADCAST SATELLITES

机译:通信和广播卫星中的发射机微探剂

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Most commercial communications and broadcast satellites operating at microwave radio frequencies use traveling wave tube amplifiers (TWTAs) as high power transmitters. Since TWTAs work at high voltages, it is not uncommon to experience microdischarges, especially early in life. This observation led to the introduction of an autonomous restart function in the companion high voltage power supply (the electronic power conditioner or EPC) of the TWTA as a safety feature. A microdischarge with enough energy above a threshold would lead to a momentary removal of high voltages, followed by an automatic restart, which is usually sufficient to allow the microdischarge event to clear with minimal loss of RF transmission. In most cases the energy involved in the microdischarge is low enough that the removal of high voltages is not required and the event may go undetected. However, an unusual signature was first noted in early 1997 on a Ku-band satellite transmitter, where the characteristics of the microdischarge event were such that the control anode voltage dropped below nominal and typically recovered over a 20 minute period. Such microdischarge events became known as the "20 Minute Effect" which has since been observed over subsequent years on other Ku-band TWTAs, as well as on Ka-band and S-band satellite TWTA transmitters in numerous satellites. This paper summarizes the in-orbit data on such microdischarges as well as the believed cause. In addition, the paper includes results from three S-band TWTAs which have operated on life test for many years. Due to ease of their monitoring instrumentation as contrast to monitoring microdischarges on orbiting operational satellites via telemetry, new data have been accumulated on this effect. The data substantiate the previous findings that microdischarges do not significantly affect satellite operation or their transmissions nor diminish the TWTAs performance, including long lifetime.
机译:大多数商业通信和在微波无线电频率下运行的广播卫星使用旅行波管放大器(TWTA)作为高功率变送器。由于TWTAS在高电压下工作,因此体验微探剂并不罕见,特别是在生命中早期。该观察导致在TWTA的伴随高压电源(电子功率调节器或EPC)中引入自主重启功能作为安全功能。具有足够的能量高于阈值的微型电量将导致瞬间去除高电压,然后自动重启,这通常足以允许微放电事件以最小的RF传输丢失清除。在大多数情况下,涉及微探测器的能量足够低,使得不需要去除高电压,并且事件可能未被发现。然而,在1997年初在Ku带卫星发射器上首次注意到不寻常的签名,其中微放电事件的特性使得控制阳极电压低于标称下降并且通常在20分钟内回收。此类微探剂事件被称为“20分钟效果”,此后已经在随后在其他KU波段TWTA上观察到的几年,以及许多卫星的KA波段和S频段卫星TWTA发射器。本文总结了在此类微探机上的轨道数据以及相信的原因。此外,本文包括三个S带TWTA的结果,该方法在寿命测试上多年来运行。由于它们的监测仪器与通过遥测的轨道运行卫星监测微探测器的监测仪器相反,新数据已经积累在这种效果上。数据证实了前一种发现,即微水机不会显着影响卫星操作或其传输,也不会减少TWTA性能,包括长寿命。

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