On the Capacity Regions of Two-Way Diamond Channels
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Publication:2977118
DOI10.1109/TIT.2015.2478461zbMATH Open1359.94296arXiv1410.5085OpenAlexW3098945205MaRDI QIDQ2977118
Vaneet Aggarwal, Mehdi Ashraphijuo, Xiaodong Wang
Publication date: 28 April 2017
Published in: IEEE Transactions on Information Theory (Search for Journal in Brave)
Abstract: In this paper, we study the capacity regions of two-way diamond channels. We show that for a linear deterministic model the capacity of the diamond channel in each direction can be simultaneously achieved for all values of channel parameters, where the forward and backward channel parameters are not necessarily the same. We divide the achievability scheme into three cases, depending on the forward and backward channel parameters. For the first case, we use a reverse amplify-and-forward strategy in the relays. For the second case, we use four relay strategies based on the reverse amplify-and-forward with some modifications in terms of replacement and repetition of some stream levels. For the third case, we use two relay strategies based on performing two rounds of repetitions in a relay. The proposed schemes for deterministic channels are used to find the capacity regions within constant gaps for two special cases of the Gaussian two-way diamond channel. First, for the general Gaussian two-way relay channel with a simple coding scheme the smallest gap is achieved compared to the prior works. Then, a special symmetric Gaussian two-way diamond model is considered and the capacity region is achieved within four bits.
Full work available at URL: https://arxiv.org/abs/1410.5085
Measures of information, entropy (94A17) Channel models (including quantum) in information and communication theory (94A40)
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