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Method for receiving signals from a constellation of satellites in close geosynchronous orbit

机译:在近地同步轨道上从卫星星座接收信号的方法

摘要

A C-Band or Ku-Band satellite communication system uses a relatively small receiving antenna while operating within current FCC designated bandwidth and using existing satellite configurations. Aperture synthesis techniques create nulls in orbit locations from which potential interference is expected. Bandwidth inefficient modulation techniques reduce transmission power flux density. Video compression reduces the power necessary to transmit video information. These three features make possible a receiving antenna with a receiving area equivalent to that of a three foot diameter dish, at C-Band frequencies. Comparable reductions are possible for Ku-, Ka-, S- and L-Band systems. Compressing the data reduces the required transmitted power by a factor of ten. Spreading the bandwidth reduces the power density below the FCC limitation. However, reducing the antenna diameter increases the beam width of the antenna, hence, the smaller antenna can no longer discriminate between adjacent C- Band satellites in their current orbital configuration. By designing the receiving antenna with nulls in orbital locations where potentially interfering satellites would be located, the small antenna avoids this interference. The same general technique is possible for a Ku-Band Antenna system. The FCC power limits are higher at Ku-Band than C-Band, however, losses due to rain absorption and thermal noise are higher at Ku- Band frequencies. Nevertheless, equivalent size savings on Ku-Band antennas are possible with the combination of the above techniques, when tailored for the Ku-Band environment.
机译:C波段或Ku波段卫星通信系统使用相对较小的接收天线,同时在当前FCC指定的带宽内运行并使用现有的卫星配置。孔径合成技术会在轨道位置产生零位,从中可能会产生潜在的干扰。带宽效率低下的调制技术会降低传输功率的通量密度。视频压缩降低了传输视频信息所需的功率。这三个特征使得接收天线在C波段频率下的接收面积等于三英尺直径碟形天线的接收面积。对于Ku频段,Ka频段,S频段和L频段系统,可以进行相当的降低。压缩数据将所需的发射功率降低了十分之一。扩展带宽会将功率密度降低到FCC限制以下。但是,减小天线直径会增加天线的波束宽度,因此,较小的天线无法再在其当前轨道配置中区分相邻的C波段卫星。通过将接收天线设计为在可能会干扰卫星的轨道位置上置零,小天线可避免这种干扰。对于Ku波段天线系统,相同的通用技术也是可能的。在Ku频段,FCC功率限制高于C频段,但是,在Ku频段,由于雨水吸收和热噪声引起的损耗更高。然而,当针对Ku频段环境进行量身定制时,结合以上技术,可以在Ku频段天线上实现同等的尺寸节省。

著录项

  • 公开/公告号US6075969A

    专利类型

  • 公开/公告日2000-06-13

    原文格式PDF

  • 申请/专利权人 TERRASTAR INC.;

    申请/专利号US19970781165

  • 发明设计人 BRUCE B. LUSIGNAN;

    申请日1997-01-09

  • 分类号H04H1/00;H04B1/06;H01Q13/00;H01Q19/12;

  • 国家 US

  • 入库时间 2022-08-22 01:36:54

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