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Diversity-Multiplexing Tradeoff for the Interference Channel With a Relay

机译:带中继的干扰信道的分集复用权衡

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We study the diversity-multiplexing tradeoff (DMT) for the slow fading interference channel with a relay (ICR). We derive four inner bounds on the DMT region: the first is based on the compress-and-forward (CF) relaying scheme, the second is based on the decode-and-forward (DF) relaying scheme, and the last two bounds are based on the half-duplex (HD) and full-duplex (FD) amplify-and-forward (AF) schemes. For the CF and DF schemes, we find conditions on the channel parameters and the multiplexing gains, under which the corresponding inner bound achieves the optimal DMT region. We also identify the cases in which the DMT region of the ICR corresponds to that of two parallel slow fading relay channels, implying that for each pair, and that a single relay can be DMT-optimal for two pairs . For the HD-AF scheme, we derive conditions on the channel coefficients under which the proposed scheme achieves the optimal DMT for the AF-based relay channel. Finally, we identify the conditions under which adding a relay strictly enlarges the DMT region relative to the interference channel without a relay.
机译:我们研究了具有中继(ICR)的慢衰落干扰信道的分集复用折衷(DMT)。我们得出DMT区域上的四个内部边界:第一个基于压缩转发(CF)中继方案,第二个基于解码和转发(DF)中继方案,最后两个边界是基于半双工(HD)和全双工(FD)放大转发(AF)方案。对于CF和DF方案,我们在信道参数和多路复用增益上找到条件,在这些条件下,相应的内边界实现了最佳DMT区域。我们还确定了ICR的DMT区域对应于两个平行的慢衰落中继信道的区域的情况,这意味着对于每对,单个中继对于两对而言可能是DMT最优的。对于HD-AF方案,我们在信道系数上得出条件,在该条件下,所提出的方案可实现基于AF的中继信道的最佳DMT。最后,我们确定在没有中继的情况下添加中继严格地相对于干扰信道扩大DMT区域的条件。

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