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Capacity Bounds for a Class of Interference Relay Channels

机译:一类干扰中继信道的容量限制

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The capacity of a class of interference relay channels (IRCs)—the injective semideterministic IRC where the relay can only observe one of the sources—is investigated. We first derive a novel outer bound and two inner bounds which are based on a careful use of each of the available cooperative strategies together with the adequate interference decoding technique. The outer bound extends Telatar and Tse’s work, whereas the inner bounds contain several known results in the literature. Our main result is the characterization of the capacity region of the Gaussian class of IRCs studied within a fixed number of bits per dimension, constant gap. The proof relies on the use of the different cooperative strategies in specific SNR regimes due to their complexity. As a matter of fact, this issue reveals the complex nature of the Gaussian IRC where the combination of a single coding scheme for the Gaussian relay and interference channel may not lead to a good coding scheme for this problem, even when the focus is only on capacity within a constant gap over all possible fading statistics.
机译:研究了一类干扰中继信道(IRC)的容量-中继式半确定性IRC,中继只能观察其中一个干扰源。我们首先推导出一个新颖的外部边界和两个内部边界,这是基于对每种可用的协作策略以及适当的干扰解码技术的谨慎使用而得出的。外部边界扩展了Telatar和Tse的作品,而内部边界包含了文献中的一些已知结果。我们的主要结果是在每个尺寸的固定位数,恒定间隙内研究高斯类IRC的容量区域。由于其复杂性,证明依赖于在特定的SNR方案中使用不同的协作策略。事实上,此问题揭示了高斯IRC的复杂性质,即使仅将重点放在高斯中继和干扰信道的单个编码方案的组合上,也可能不会导致针对此问题的良好编码方案在所有可能的衰落统计数据之间保持恒定差距内的容量。

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