Airborne satellite antenna steering and mounting systems

D. Ilcev
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Abstract

This paper describes the steering and mount systems of Airborne Satellite Antenna (ASA) as a most important and sensitive part of both Aeronautical Mobile Satellite Communication (AMSA) and Aeronautical Mobile Satellite Broadcasting (AMSB) systems. In general, most of ASA solutions are small and easy to install onboard aircraft such as Low Gain Antenna (LGA). However, in particular, some of ASA systems are quite complex, relatively large and heavy, especially airborne High Gain Antenna (HGA) for Aircraft Earth Stations (AES), such as Inmarsat-H, High Speed Data (HSD), Swift64, SwiftBroadband and Digital Video Broadcasting-Return Channel via Satellite (DVB-RCS) antennas, so they need sophisticated steering and mounting systems. Over the past decade are developed the steering ASA broadband system, which main components are reduced considerably in both physical size and weight. These reductions are presented in this research that brings greater Effective Isotropic Radiated Power (EIRP) from satellite transponders coupled with GaAs-FET technology at the front end the satellite receiver. In this paper are also introduced existing types of mechanical, electrical, combined and other mount systems of ASA steering system. The ASA has to be always pointed towards the satellite in spite of aircraft motions. At this point, the mount airborne satellite system as one of the main requirements in designing the mobile satellite antenna systems from the technical and rational viewpoints is discussed.
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机载卫星天线转向和安装系统
本文介绍了航空卫星移动通信(AMSA)和航空卫星移动广播(AMSB)系统中最重要、最敏感的机载卫星天线转向与挂载系统。一般来说,大多数ASA解决方案都很小,易于安装在飞机上,例如低增益天线(LGA)。然而,特别是一些ASA系统非常复杂,相对较大和较重,特别是用于飞机地面站(AES)的机载高增益天线(HGA),如Inmarsat-H,高速数据(HSD), Swift64, SwiftBroadband和通过卫星的数字视频广播返回信道(DVB-RCS)天线,因此它们需要复杂的转向和安装系统。在过去的十年中,开发了转向ASA宽带系统,其主要部件的物理尺寸和重量都大大减小。这些减少在本研究中提出,带来了更大的有效各向同性辐射功率(EIRP),从卫星转发器与卫星接收器前端的GaAs-FET技术相结合。本文还介绍了ASA转向系统现有的机械式、电动式、组合式和其他悬置系统。尽管飞机运动,ASA必须始终指向卫星。在此基础上,从技术和理性的角度论述了机载卫星系统作为移动卫星天线系统设计的主要要求之一。
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