首页> 外文OA文献 >Waveguide Power Combiner Demonstration for Multiple High Power Millimeter Wave TWTAs
【2h】

Waveguide Power Combiner Demonstration for Multiple High Power Millimeter Wave TWTAs

机译:多个大功率毫米波TWTA的波导功率合成器演示

摘要

NASA is presently developing nuclear reactor technologies, under Project Prometheus, which will provide spacecraft with greatly increased levels of sustained onboard power and thereby dramatically enhance the capability for future deep space exploration. The first mission planned for use of this high power technology is the Jupiter Icy Moons Orbiter (JIMO). In addition to electric propulsion and science, there will also be unprecedented onboard power available for deep space communications. A 32 GHz transmitter with 1 kW of RF output power is being considered to enable the required very high data transmission rates. One approach to achieving the 1 kW RF power, now being investigated at NASA GRC, is the possible power combining of a number of 100-1 50 W TWTs now under development. The work presented here is the results of a proof-of-concept demonstration of the power combining Ka-band waveguide circuit design and test procedure using two Ka- band TWTAs (Varian model VZA6902V3 and Logimetrics model A440/KA-1066), both of which were previously employed in data uplink evaluation terminals at 29.36 GHz for the NASA Advanced Communications Technology Satellite (ACTS) program. The characterization of the individual TWTAs and power combining demonstration were done over a 500 MHz bandwidth from 29.1 to 29.6 GHz to simulate the Deep Space Network (DSN) bandwidth of 3 1.8 to 32.3 GHz. Figures 1-3 show some of the power transfer and gain measurements of the TWTAs using a swept signal generator (Agilent 83640b) for the RF input. The input and output powers were corrected for circuit insertion losses due to the waveguide components. The RF saturated powers of both ACTS TWTAs were on the order of 120 W, which is comparable to the expected output powers of the 32 GHz TWTs. Additional results for the individual TWTAs will be presented (AM/AM, AM/PM conversion and gain compression), some of which were obtained from swept frequency and power measurements using a vector network analyzer. The results for the power combining demonstration as well as a more detailed description of the power combining test circuit and test procedure will also be presented.
机译:美国宇航局目前正在普罗米修斯计划下开发核反应堆技术,该技术将为航天器提供更高水平的持续车载电力,从而显着提高未来太空探索的能力。计划使用这种高功率技术的第一个任务是木星冰月卫星(JIMO)。除了电力推进和科学以外,还将有空前的机载功率可用于深空通信。正在考虑使用具有1 kW RF输出功率的32 GHz发射机来实现所需的极高数据传输速率。 NASA GRC目前正在研究一种实现1 kW射频功率的方法,该方法可能是将100-1 50 W TWT的功率组合在一起。这里介绍的工作是使用两个Ka波段TWTA(Varian型号VZA6902V3和Logimetrics型号A440 / KA-1066)对Ka波段波导电路的设计和测试过程进行功率组合的概念验证的结果。先前曾在29.36 GHz的数据上行链路评估终端中用于NASA高级通信技术卫星(ACTS)计划。在29.1 GHz至29.6 GHz的500 MHz带宽上完成了各个TWTA的表征和功率组合演示,以模拟3 1.8至32.3 GHz的深空网(DSN)带宽。图1-3显示了使用扫频信号发生器(Agilent 83640b)作为RF输入的TWTA的一些功率传输和增益测量结果。针对由于波导部件而引起的电路插入损耗,校正了输入和输出功率。两个ACTS TWTA的RF饱和功率约为120 W,这与32 GHz TWT的预期输出功率相当。还将介绍各个TWTA的其他结果(AM / AM,AM / PM转换和增益压缩),其中一些是使用矢量网络分析仪通过扫频和功率测量获得的。还将展示功率组合演示的结果,以及功率组合测试电路和测试过程的更详细描述。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号