用于GALS R16应答器的大功率单元

Edgard Kourmish, V. Keresteciyan, A. Schwarz
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引用次数: 0

摘要

介绍了GALS R16应答器大功率单元的基本设计原理和性能。本文概述了多尼尔卫星系统有限公司为改进未来卫星转发器的TWTA而开展的活动。GALS R16航天器的任务是支持俄罗斯ku波段电视网络,该网络允许使用直径60厘米到90厘米的天线的简单和低成本的地面用户单元。这需要51 dBW的卫星EIRP。为了达到所需的辐射场强,在24个应答器通道(4:6冗余)中使用寿命结束时功率水平为100 W的行波管放大器(TWTA)。JSC INFORMCOSMOS、SPAR Aerospace和多尼尔卫星系统有限公司的共同设计活动导致了TWTA设计,该设计满足了俄罗斯航天器的要求,并在多尼尔最近执行的空间计划中实现了最完美的功能。额外的转发器设备,如波导隔离器和开关,由COMDEV Canada建造,SPAR Aerospace提供。TWTA由多尼尔公司设计、集成和测试,使用由德国TTEG(原AEG)提供的TWTA和由德国多尼尔卫星系统有限公司开发、制造的电力调节器(EPC)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-power units for GALS R16 transponders
The basic design principles and performance of the high-power units for the GALS R16 transponders are presented. An overview is given which details the activities at Dornier Satellitensysteme GmbH for improved TWTA for future satellite transponders. The mission of the GALS R16 spacecraft is the support of the Russian Ku-band TV network which allows simple and low-cost on-ground subscriber units using antennas of 60 cm to 90 cm diameter. This requires a satellite EIRP of 51 dBW. To achieve the required radiated field strength, travelling wave tube amplifiers (TWTA) at power levels of 100 W at the end of life (EOL) are used in the 24 transponder channels (4:6 redundancy). Common design activities of JSC INFORMCOSMOS, SPAR Aerospace and Dornier Satellitensysteme GmbH led to a TWTA design which meets the Russian spacecraft requirement and achieves the most perfect features achieved during recent space programs executed by Dornier. Additional transponder equipment as waveguide isolators and switches are built by COMDEV Canada and supplied by SPAR Aerospace. The TWTA are designed, integrated and tested by Dornier using TWTA supplied by TTEG (former AEG) Germany and electrical power conditioners (EPC) developed, space-qualified and manufactured by Dornier Satellitensysteme GmbH, Germany.
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