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Robust Multi-Layer Coding in the Presence of Channel Distribution Uncertainty

机译:存在信道分布不确定性的鲁棒多层编码

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A block fading point-to-point communication channel is considered, where the channel statistic varies between two possible choices. Assuming the transmitter is unaware of the instantaneous channel gain values and the current channel statistic, a multi-layer coding approach is incorporated where the optimal rate allocation strategy across code layers is devised maximizing the worst case average achievable rate. Moreover, noting that the proposed optimization problem is convex, the problem is tackled from another perspective by employing the notion of strong duality, which leads to introducing a least favorable distribution based on the considered possible distributions. This helps to effectively solve the problem for any arbitrary number of distributions. Finally, the results are compared with those of single- and double-layer coding, in order to get an insight regarding the rate loss due to incorporating finite number of layer(s).
机译:考虑了块衰落点对点通信信道,其中信道统计在两个可能的选择之间变化。假设发射机不了解瞬时信道增益值和当前信道统计信息,则采用多层编码方法,其中设计了跨代码层的最佳速率分配策略,以最大化最坏情况下的平均可实现速率。此外,注意到所提出的优化问题是凸的,该问题是通过采用强对偶性的概念从另一个角度解决的,这导致在考虑的可能分布的基础上引入最不利的分布。这有助于有效解决任意数量分布的问题。最后,将结果与单层和双层编码的结果进行比较,以了解有关由于合并有限层数而导致的速率损失的见解。

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