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Measurement experiment of deployable large scale reflector antenna with DBF using A-METLAB

机译:使用A-METLAB的带DBF的可展开式大型反射天线的测量实验

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摘要

Space base large scale deployable antenna is common element technologies for space development. It will be used not only communication but also observation satellite or solar power satellite. Now, we proposed new satellite communication system called STICS (Satellite/Terrestrial Integrated mobile Communication System) by using large-scale deployable antenna (LDR) of 30m class in the gestational orbit. It has dual communication function that can be connected with both the terrestrial system and the satellite system is composed by using the common terminal with a handheld shape. This communication system will be especially useful for the emergency disaster. For small scale model of STICS satellite beam former and digital bent pipe system, NICT developed 16-element feeding antenna with Digital Beam Former and Channelizer for flexible usage of frequency. To the realistic demonstration, we are now measuring 16-elements DBF with large scale deployable reflector (3.3m Diameter). In this measurement we used A-METLAB (Advanced Microwave Energy Transmission LABoratory) and Plane Polar Near Field Measurement system in Kyoto University. We will introduce preliminary result of this experiment.
机译:空基大规模可部署天线是用于空间开发的常见元素技术。它不仅将用于通信,还将用于观测卫星或太阳能卫星。现在,我们通过在孕育轨道上使用30m级的大型可部署天线(LDR),提出了一种新的卫星通信系统,称为STICS(卫星/地面集成移动通信系统)。它具有双重通信功能,可以与地面系统连接,而卫星系统则是通过使用手持式公共终端组成的。该通信系统对于紧急灾难特别有用。针对STICS卫星波束形成器和数字弯管系统的小规模模型,NICT开发了带有数字波束成形器和信道器的16元素馈电天线,以灵活地使用频率。为了进行实际演示,我们现在使用大型可展开反射器(直径3.3m)测量16元素DBF。在此测量中,我们使用了京都大学的A-METLAB(先进的微波能量传输实验室)和平面极近场测量系统。我们将介绍该实验的初步结果。

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