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A Rateless Coded Protocol for Half-Duplex Wireless Relay Channels

机译:半双工无线中继信道的无速率编码协议

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摘要

We propose a rateless coded protocol for a half-duplex wireless relay channel where all links experience independent quasi-static Rayleigh fading and the instantaneous channel realizations are unavailable at the transmitters. We assume that the network does not have a stringent delay constraint-thus the source and/or the relay continue transmitting until the destination acknowledges successful decoding. We identify rateless coded relaying as the natural choice, where each transmission from the source and/or the relay adds incremental redundancy to help the destination recover the original message. Our proposed protocol utilizes, in conjunction with rateless coding, a combination of the two popular relay cooperation schemes, namely decode-forward and compress-forward. Assuming very limited feedback from the destination, we derive the theoretical performance bounds specifically with binary phase-shift keying. We then implement the rateless coded relaying protocol using Raptor codes. The degree profiles for the Raptor codes are designed to maximize the average throughput-with the design formulated as a convex optimization problem. Using discretized density evolution for asymptotically large block lengths, the optimized codes lose approximately 5% in performance from the theoretical limit, whereas with practical finite block lengths, the performance loss is approximately 9%.
机译:我们为半双工无线中继信道提出了一种无速率编码协议,该协议中的所有链路均经历独立的准静态瑞利衰落,并且在发射机处无法获得瞬时信道。我们假设网络没有严格的延迟约束,因此源和/或中继将继续传输,直到目的地确认成功解码为止。我们将无速率编码中继识别为自然选择,来自源和/或中继的每次传输都增加了增量冗余,以帮助目标恢复原始消息。我们提出的协议与无速率编码结合使用了两种流行的中继协作方案的组合,即解码转发和压缩转发。假设从目的地获得的反馈非常有限,我们特别使用二进制相移键控来推导理论性能范围。然后,我们使用Raptor代码实现无速率编码中继协议。 Raptor码的度分布被设计为最大化平均吞吐量-设计被设计为凸优化问题。使用渐近的大块长度的离散密度演化,优化代码比理论极限损失了大约5%的性能,而在实际有限块长度下,性能损失大约为9%。

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