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Technical aspects of the design of communication-satellite systems

机译:卫星通信系统设计的技术方面

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The paper surveys some of the technical problems involved in the design of communication-satellite systems providing substantially worldwide coverage for the transmission of multichannel telephony and television signals. Factors affecting the choice of orbit and type of satellite are discussed, and it is concluded that attitude-stabilised, station-keeping satellites in medium-altitude circular orbits represent a desirable design objective. The operational and performance requirements for multichannel telephony and television are considered in the light of the findings of the international Radio Consultative Committee at its Xth Plenary Assembly (Geneva, 1963). Technical factors, such as the choice of frequency and modulation method, are discussed, with particular reference to the problem of providing multistation access to satellites. The limitations on satellite and terrestrial radio-relay system transmitter power imposed by the need to share the same frequency bands are examined, and the advantages of using preferred radio-frequency channelling arrangements by both systems are discussed. Finally, an outline is given of one possible approach to the design of a worldwide system using twelve station-keeping, attitude-stabilised satellites in a subsynchronous (8h) orbit at 14000km height in the equatorial plane of the Earth.
机译:本文调查了卫星通信系统设计中涉及的一些技术问题,这些技术为多通道电话和电视信号的传输提供了范围广泛的全球覆盖。讨论了影响轨道选择和卫星类型的因素,得出的结论是,中高度圆形轨道中姿态稳定的驻站卫星代表了理想的设计目标。根据国际无线电协商委员会在其第十届全体会议(1963年,日内瓦)的调查结果,考虑了多通道电话和电视的操作和性能要求。讨论了诸如频率选择和调制方法之类的技术因素,特别是涉及提供对卫星的多站访问的问题。审查了需要共享相同频带对卫星和地面无线电中继系统发射机功率的限制,并讨论了两个系统使用首选射频信道安排的优势。最后,概述了一种设计全球系统的可能方法,该方法使用12个站位,姿态稳定的卫星在地球赤道平面14000 km高的次同步(8h)轨道上进行。

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