An autonomous antenna for aerospace applications

W. Gregorwich, R. Ward
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引用次数: 2

Abstract

A compact shipboard antenna array that provides full hemispherical electronic scan and tracking is described. Using surface acoustic wave (SAW) devices and microstrip variable power combiners (VPCs), the autonomous array can track and receive telemetry data from a submarine-launched Trident II missile just as well as a large mechanically scanned dish antenna. The tracking antenna consists of three-element microstrip patch antenna panels located every 60 degrees around the periphery of the antenna. There are two adjacent patch radiators for both azimuth and elevation angle-of-arrival direction-finding. The tracking information from the SAW is fed into a microprocessor which selects the optimum patch polarization and chooses which high-gain helix radiator to turn on to point to the missile. The energy is transferred from one helix to another by means of VPCs and switches via microprocessor commands. When the VPC has energy equal to that of two adjacent helices, there is a 3-dB increase in gain due to the two-element array factor.<>
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用于航空航天应用的自主天线
描述了一种紧凑的舰载天线阵列,提供全半球电子扫描和跟踪。使用表面声波(SAW)设备和微带可变功率组合器(VPCs),自主阵列可以跟踪和接收来自潜射三叉戟II导弹的遥测数据,就像一个大型机械扫描碟形天线一样。跟踪天线由三单元微带贴片天线板组成,每60度分布在天线外围。有两个相邻的贴片散热器用于方位角和仰角到达测向。SAW的跟踪信息被送入微处理器,微处理器选择最优的贴片偏振,并选择打开哪个高增益螺旋辐射体指向导弹。能量通过微处理器指令通过vpc和开关从一个螺旋转移到另一个螺旋。当VPC的能量等于相邻两个螺旋的能量时,由于双元阵列因子。>,增益增加3db
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