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Commercial communications satellites in the post-2020 era

机译:在2020年代时代的商业通信卫星

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The commercial segment of the satellite communications industry has led the way in terms of innovation and investment. Beginning with the launch of Intelsat 1, Early Bird, in 1965, the size and coverage of satellites in general and geostationary Earth orbit (GEO) systems in particular, have complemented and sometimes matched that of both fiber optic and wireless resources. The latest trend toward high-throughput satellites and non-GEO constellations assures that space is still vital to a variety of users who can depend on the robustness and bandwidth offered by satellite links. Perhaps we are at a point of inflection reminiscent of the 1980s when cables began to take over long-haul telecom demands, and again in the 1990s when satellite TV took front stage in terms of monetary gains and general knowledge of space broadcasting. The Internet exploded in the late 1990s to become a foundation for almost all forms of communication and even product marketing. Satellites responded with the very small aperture terminal that could deliver medium data rates, but cable modems and 3G wireless proved the master. Post-2000, satellite links came back by proving their effeteness in supporting remote locations to extend cellular systems, serve ships and aircraft, and aiding the success of our defense forces by reaching beyond line-of-sight. This brings us to the current day where our ability to use space is unparalleled, yet some doubt that satellites can be relevant and even retain an innovative posture as the world adopts 5G. To this, we can point to how the fundamentals cannot change as to the advantages of the space link and coverage of the planet, and of outer space for that matter. We discuss construction of space systems to apply low Earth orbit (LEO), medium Earth orbit (MEO), and GEO, with advanced features to reach all people and places, providing them with information and critical support no matter their access to terrestrial wireless or fiber. We describe the processes needed to allow the space segment and satellite terminal devices to adapt to the user's situation, dependent on network connectivity and handoff performance. Ground facilities to access networks and resources will likewise arise from cloud technologies and intelligence to build infrastructure that can overcome prior disadvantages in remoteness and susceptibility to outage and other threats. This is the promise of the renewed commercial satellite communications segment, precisely because this is where innovators reside and where investment will always find a home.
机译:卫星通信行业的商业领域在创新和投资方面导致了道路。从Intelsat 1,早起,1965年开始,一般和地球地球地球地球轨道(Geo)系统的卫星的大小和覆盖,特别是辅助光纤和无线资源的典型和覆盖。高吞吐量卫星和非Geo Constellations的最新趋势确保了空间对各种用户依赖于卫星链接提供的鲁棒性和带宽的用户仍然至关重要。也许我们在20世纪80年代来看,当电缆开始接管长途电信要求时,在20世纪90年代,当卫星电视在货币收益和空间广播的一般知识方面,在20世纪90年代再次在20世纪90年代再次发生了20世纪80年代。互联网在20世纪90年代后期爆炸,成为几乎所有形式的通信甚至产品营销的基础。卫星通过非常小的光圈终端响应,可以提供中等数据速率,但电缆调制解调器和3G无线证明了主机。 2000年后,卫星链接通过证明他们在支持远程位置来扩展蜂窝系统,为船舶和飞机提供服务,并通过达到超越视线来实现我们的国防力量的成功。这将我们带到当前我们使用空间的能力,但有些怀疑卫星可以与世界相互作用,甚至保留创新姿势。为此,我们可以指出基本面如何如何改变到地球的空间链路和覆盖范围以及外部空间的优势。我们讨论空间系统的建设,以应用低地地球轨道(LEO),中地球轨道(MEO)和地理,具有先进的功能,以实现所有人和地点,为他们提供信息和关键支持,无论他们访问地面无线或访问陆地无线纤维。我们描述了允许空间段和卫星终端设备适应用户情况所需的过程,取决于网络连接和切换性能。接入网络和资源的地面设施同样来自云技术和智能来建立基础设施,可以克服远程和中断和其他威胁的遥感和易感性的现有缺点。这是重新开发的商业卫星通信细分市场的承诺,正是因为这是创新者所在的地方,投资总能找到一个家。

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