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Error performances of multiple access system using analog network coding

机译:使用模拟网络编码的多址系统的错误性能

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In this work, we study the error performances of the multiple access system using analog network coding (ANC), where all the users broadcast their data to the relays and destination simultaneously in the first phase, and the relays forward the source messages that have been mixed in the air in the second phase. Depending on the type of relay power constraint, both the variable gain relaying and fixed gain relaying are considered. We show that the error rates of both schemes scale as O(log P/P2) at high signal-to-noise ratio (SNR), where P is the transmitted power. We also show that the error performance is dominated by the relay-destination channel, thus the best relay position should be close to the destination. We also demonstrate that ANC may be outperformed by the conventional amplify-and-forward scheme when the data rate is low and the user number is not large. Finally, we propose a relay selection strategy based on Min-Max criterion that can achieve full diversity when there are multiple relays.
机译:在这项工作中,我们研究使用模拟网络编码(ANC)的多址系统的错误性能,其中所有用户在第一阶段同时将其数据广播到中继站和目的地,然后中继站将已转发的源消息转发给中继站。在第二阶段混入空气中。根据继电器功率限制的类型,可同时考虑可变增益继电器和固定增益继电器。我们表明,在高信噪比(SNR)下,两种方案的误码率均按O(log P / P2)进行缩放,其中P是发射功率。我们还表明,错误性能受中继目标通道的支配,因此最佳中继位置应靠近目标位置。我们还证明,当数据速率较低且用户数量不多时,ANC可能会优于常规的放大转发方案。最后,我们提出了一种基于最小-最大准则的中继选择策略,当有多个中继时可以实现完全分集。

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