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Potential Benefits of Dynamic Beam Synthesis to Mobile Satellite Communication, Using the Inmarsat 4 Antenna Architecture as a Test Example

机译:动态光束合成对移动卫星通信的潜在好处,使用Inmarsat 4天线架构作为测试示例

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摘要

Present mobile satellite communication systems use large antennas to provide multiple high-gain beams. Each beam covers a fixed geographic cell on the earth. Spatial frequency reuse is provided by synthesising beams with low-power levels over all cells operating at the same frequency. The performance needs for future systems are steadily increasing, leading to higher-gain requirements, which are met by using larger antennas with narrower beams. So the antenna pointing errors become a significant loss factor. An alternative approach is to abandon the use of fixed beams and dynamically synthesise the beams to optimise the antenna performance in real time. This both increases user gain and lowers cofrequency interference whilst also reducing the effects of pointing errors. Simulations, using the Inmarsat 4 antenna architecture as a test example, show that the spatial isolation performance can be significantly improved by using Dynamic Beam Synthesis.
机译:目前移动卫星通信系统使用大天线来提供多个高增益梁。每个光束覆盖地球上的固定地理单元。通过在以相同频率操作的所有单元上合成具有低功率水平的光束来提供空间频率重用。对未来系统的性能需求稳步增加,导致更高的增益要求,通过使用具有较窄梁的较大天线来满足。因此,指向误差的天线成为一个显着的损失因素。另一种方法是放弃固定光束的使用,并动态地合成光束以实时优化天线性能。这两者都增加了用户增益并降低了CoFRequency干扰,同时还降低了指向误差的影响。模拟,使用Inmarsat 4天线架构作为测试示例,表明通过使用动态波束合成可以显着提高空间隔离性能。

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  • 作者

    R. F. E. Guy;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 eng
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