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Optimal linear-combining receiver for decode-and-forward relays using superposition coding

机译:使用叠加编码的解码转发中继的最佳线性组合接收机

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We consider a relay network with a single source, a single destination, and multiple relays. The relays are half-duplex and use the decode-and-forward protocol. A layered Gaussian source partitioned into two layers is transmitted. The source broadcasts a message consisting of two layers to all the relays using superposition coding. Each relay re-encodes and forwards all its successfully decoded layers to the destination using an orthogonal channel. Superposition coding is used only if both layers are forwarded. We propose a novel approach to derive the optimal linear-combining receiver at the destination. Numerical results show that the two-layer scheme using superposition coding outperforms a conventional one-layer scheme in terms of average throughput and expected distortion.
机译:我们考虑一个具有单个源,单个目的地和多个中继的中继网络。中继是半双工的,并使用解码和转发协议。传输分为两层的分层高斯源。源使用叠加编码向所有中继广播由两层组成的消息。每个中继使用正交信道对所有成功解码的层进行重新编码并将其转发到目的地。仅当两层都转发时才使用叠加编码。我们提出了一种新颖的方法来导出目的地的最佳线性组合接收机。数值结果表明,在平均吞吐量和预期失真方面,使用叠加编码的两层方案优于传统的一层方案。

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