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Enhanced Spread Spectrum Aloha (E-SSA), an emerging satellite return link messaging scheme

机译:增强扩频Aloha(E-SSA),一种新兴的卫星回程链路消息传递方案

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This paper presents a return link multiple-access scheme that enables low terminal cost and high transmission efficiencies for systems such as large-scale vehicles, satellite-based telemetry service systems, or industrial supervisory control and data acquisition (SCADA) systems. These terminals have low power, small antennas, and deliver short messages, and no power control method has been practically feasible for them. The presented return link multiple-access scheme employs asynchronous Spread Spectrum Aloha (SSA) techniques combined with a transmission control mechanism based on a signal-to-noise ratio (SNR) estimator of the received signal in the forward link to dynamically identify the proper conditions in the channel. The hub demodulator employs successive interference cancelation (SIC) at the packet level with a cyclic redundancy check (CRC). The normalized channel utilization is close to 2 bits/s/Hz with packet loss ratios (PLRs) of 10-10.
机译:本文提出了一种回程链路多路访问方案,该方案可为大型车辆,基于卫星的遥测服务系统或工业监督控制和数据采集(SCADA)系统等系统实现较低的终端成本和较高的传输效率。这些终端具有低功率,小的天线并且传送短消息,并且对于它们来说还没有功率控制方法在实践上是可行的。提出的返回链路多址方案采用异步扩频Aloha(SSA)技术,并结合基于前向链路中接收信号的信噪比(SNR)估计器的传输控制机制来动态识别适当条件在频道中。集线器解调器在数据包级别使用具有循环冗余校验(CRC)的连续干扰消除(SIC)。归一化的信道利用率接近2位/秒/赫兹,丢包率(PLR)为10-10。

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