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The Degrees of Freedom of Two-Unicast Layered MIMO Interference Networks With Feedback

机译:具有反馈的两单播分层MIMO干扰网络的自由度

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Two-unicast layered interference networks under the Shannon feedback and limited Shannon feedback settings are studied from a degrees of freedom (DoF) perspective. The main focus is on the archetypal two-hop multiple-input, multiple-output (MIMO) network, denoted here as the network, which is a layered two-unicast network with two transmitters, two relays, and two receivers, with the first hop network between the transmitters and the relays, and the second hop network between the relays and the receivers, both being MIMO Gaussian interference channels. In particular, the first transmitter–receiver pair and the first relay have antennas each and the second transmitter–receiver pair and the second relay having antennas each. The (full) Shannon feedback setting for the network is one in which the transmitters have delayed knowledge of the first and second hop channel coefficients and the relay and destination outputs and the relays have delayed knowledge of the second hop channel coefficients and destination outputs. The DoF region under this setting is established. A key result in this paper shows that this Shannon feedback DoF region can in fact be achieved with much less side information—under what we refer to as the limited Shannon feedback setting—wherein the transmitters have no channel state or output feedback whatsoever and only the -antenna relay (assuming ) has delayed knowledge of the coefficients of the second-hop channel and of only the received signal of the -antenna receiver. For this limited Shannon feedback setting, the DoFs region of the network is established by introducing a retro-cooperative interference alignment scheme. These DoF region results for the network with feedback are also extended to more general layered interference networks including the two-unicast -hop layered networks as well as layered networks with more general numbers of antennas at the various terminals.
机译:从自由度(DoF)角度研究了Shannon反馈和有限Shannon反馈设置下的两单播分层干扰网络。主要重点是原型两跳多输入多输出(MIMO)网络,在此表示为网络,它是一个分层的两单播网络,具有两个发送器,两个中继器和两个接收器,第一个发射机和中继站之间的跃点网络以及中继站和接收机之间的第二跃点网络都是MIMO高斯干扰信道。特别是,第一对收发器和第一中继器各有天线,第二对收发器和第二中继器各有天线。网络的(完整)Shannon反馈设置是这样的:发射器延迟了对第一和第二跳信道系数以及中继站和目标输出的了解,而中继站却延迟了对第二跳信道系数和目标输出的了解。在此设置下建立DoF区域。本文的一项关键结果表明,实际上,在没有所谓的香农反馈设置的情况下,只需很少的辅助信息就可以实现香农反馈DoF区域,其中发射器没有任何信道状态或输出反馈,只有-天线中继(假设)延迟了对第二跳信道的系数以及-天线接收器的接收信号的了解。对于此有限的Shannon反馈设置,通过引入追溯合作干扰对齐方案来建立网络的DoFs区域。具有反馈的网络的这些DoF区域结果也扩展到了更通用的分层干扰网络,包括两个单播跳频分层网络以及在各个终端上具有更通用数量天线的分层网络。

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