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Modular approach for satellite communication ground terminals

机译:卫星通信地面终端的模块化方法

摘要

The trend in satellite communications is toward completely digital, time division multiple access (TDMA) systems with uplink and downlink data rates dictated by the type of service offered. Trunking terminals will operate in the 550 MBPS (megabit per second) region uplink and downlink, whereas customer premise service (CPS) terminals will operate in the 25 to 10 MBPS region uplink and in the 200 MBPS region downlink. Additional criteria for the ground terminals will be to maintain clock sychronization with the system and burst time integrity to within a matter of nanoseconds, to process required order-fire information, to provide adaptive data scrambing, and to compensate for variations in the user input output data rates, and for changes in range in the satellite communications links resulting from satellite perturbations in orbit. To achieve the required adaptability of a ground terminal to the above mentioned variables, programmable building blocks can be developed that will meet all of these requirements. To maintain system synchronization, i.e., all bursted data arriving at the satellite within assigned TDMA windows, ground terminal transmit data rates and burst timing must be maintained within tight tolerances. With a programmable synchronizer as the heart of the terminal timing generation, variable data rates and burst timing tolerances are achievable. In essence, the unit inputs microprocessor generated timing words and outputs discrete timing pulses.
机译:卫星通信的趋势是朝着完全数字化的时分多址(TDMA)系统发展,上行和下行数据速率由所提供的服务类型决定。中继终端将在550 MBPS(每秒兆位)区域的上行链路和下行链路中运行,而客户驻地服务(CPS)终端将在25至10 MBPS区域的上行链路中以及200 MBPS区域的下行链路中运行。接地端子的其他标准是将时钟与系统的时钟同步性和突发时间的完整性保持在纳秒级之内,处理所需的命令触发信息,提供自适应数据加扰以及补偿用户输入输出的变化数据速率,以及卫星在轨道上的扰动导致卫星通信链路范围的变化。为了实现接地端子对上述变量的所需适应性,可以开发出满足所有这些要求的可编程构件。为了保持系统同步,即所有在指定的TDMA窗口内到达卫星的突发数据,地面终端发射数据速率和突发定时必须保持在严格的公差范围内。使用可编程同步器作为终端时序生成的核心,可以实现可变的数据速率和突发时序公差。本质上,该单元输入微处理器生成的定时字并输出离散的定时脉冲。

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  • 作者

    Gould G. R.;

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  • 年度 1984
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