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Antenna payload design for advanced satcom satellites

机译:先进卫星通信卫星的天线有效载荷设计

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Advanced Satcom Satellites require uplink (30 GHz) and downlink (20 GHz) antennas providing regional earth coverage (Canada, CONUS, Alaska, Hawaii and Puerto Rico) using high gain multiple overlapping spot beams. The antenna coverage with 128 beams that are arranged in a hexagonal grid fashion is shown in Figure 1. Critical antenna design parameters required for this system are very low scan loss over a ±9 beamwidths scan, maximum coverage area gain and moderate sidelobe isolation among alternate beams that reuse the frequency. In order to satisfy these requirements, a dielectric spherical lens antenna has been selected for both Tx and Rx antennas to take advantage of its excellent scan capabilities and its centre-feeding configuration. The radiation characteristics of the beams produced by such a lens using septet feed per beam on Rx and single feed per beam on Tx have been optimized and are presented here. The resultant beams show scan loss of less than 0.4 dB over the coverage region and meet the system requirements.
机译:高级SATCOM卫星需要上行链路(30 GHz)和下行链路(20 GHz)天线,提供区域地球覆盖率(加拿大,康瑙,阿拉斯加,夏威夷和波多黎各)使用高增益多重射灯。具有128个梁以六边形网格时尚布置的天线覆盖率如图1所示。该系统所需的临界天线设计参数在±9波束扫描,最大覆盖区域增益和适度的替代方案中的扫描损耗非常低。重用频率的光束。为了满足这些要求,已经为TX和RX天线选择了介电球形透镜天线,以利用其优异的扫描能力及其中心馈送配置。通过在Rx上使用每光束的这种透镜产生的镜射线的辐射特性已经过优化了Tx上的每光束上的单射流,并在此呈现。结果光束在覆盖区域上显示扫描损耗小于0.4 dB,并满足系统要求。

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