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Channel Estimation for Overlay Coding in Multibeam Satellite Systems

机译:多波束卫星系统中叠加编码的信道估计

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We investigate the effect of channel estimation inaccuracy in multibeam satellite system forward link, with dense frequency reuse, using our previously proposed overlay coding technique. We have shown overlay coding to be the capacity achieving multi user detection (MUD) technique, by transmitting over non-orthogonal channels. The overlay coding scheme is based on cooperation of transmitting beams by targeting one user terminal at a time. The jointly reception of data streams features multiple access channel (MAC), where both data will be recovered by devising successive interference cancellation (SIC). However, in case of channel estimation error, though it might result in slight errors at the beginning, the propagation of error through SIC causes huge loss of data frames and throughput degradation. So, we propose a strategy based on a back-off algorithm to mitigate the problem. Our simulation results show that significant drop in frame error rate (FER) can be achieved, and overlay coding can reach expected data throughput gain almost the same as the cases with perfect channel estimation.
机译:我们使用先前提出的覆盖编码技术,研究了密集密集复用的多波束卫星系统前向链路中信道估计误差的影响。我们已经表明覆盖编码是通过在非正交信道上传输来实现多用户检测(MUD)技术的能力。覆盖编码方案基于通过一次瞄准一个用户终端的发射波束的协作。数据流的联合接收具有多路访问信道(MAC),其中两个数据将通过设计连续干扰消除(SIC)来恢复。但是,在信道估计错误的情况下,尽管可能在开始时会导致轻微的错误,但通过SIC传播错误会导致数据帧的巨大损失和吞吐量下降。因此,我们提出了一种基于后退算法的策略来缓解该问题。我们的仿真结果表明,可以实现帧错误率(FER)的显着下降,并且覆盖编码可以达到与理想信道估计的情况几乎相同的预期数据吞吐率增益。

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