脏纸integer-forcing

Wenbo He, B. Nazer, S. Shamai
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引用次数: 2

摘要

考虑一个信道矩阵为H的高斯多输入多输出(MIMO)多接入信道(MAC)和一个信道矩阵为Hτ的高斯MIMO广播信道(BC)。对于MIMO MAC,整数强制结构包括首先解码传输码字的整数线性组合,然后对原始消息进行求解。对于MIMO BC,整数强制结构包括在发送端对整数-线性组合进行预反转,以便每个接收端通过解码整数-线性组合获得所需的码字。在这两种情况下,积分强制比零强制提供更高的可实现速率。在最近的工作中,我们建立了整数强制的上行链路-下行链路对偶关系,即我们表明,通过在MIMO MAC上进行整数强制可以实现的任何速率元组都可以通过在MIMO BC上进行整数强制获得相同的和功率,反之亦然。研究还表明,MIMO MAC的整数强制可以通过连续消去来增强。在这里,我们引入了用于MIMO BC的脏纸整数强制,并建立了用于MIMO MAC的连续整数强制的上行-下行对偶性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dirty-paper integer-forcing
Consider a Gaussian multiple-input multiple-output (MIMO) multiple-access channel (MAC) with channel matrix H and a Gaussian MIMO broadcast channel (BC) with channel matrix Hτ. For the MIMO MAC, the integer-forcing architecture consists of first decoding integer-linear combinations of the transmitted codewords, which are then solved for the original messages. For the MIMO BC, the integer-forcing architecture consists of pre-inverting the integer-linear combinations at the transmitter so that each receiver can obtain its desired codeword by decoding an integer-linear combination. In both cases, integer-forcing offers higher achievable rates than zero-forcing. In recent work, we established an uplink-downlink duality relationship for integer-forcing, i.e., we showed that any rate tuple that is achievable via integer-forcing on the MIMO MAC can be achieved via integer-forcing on the MIMO BC with the same sum power and vice versa. It has also been shown that integer-forcing for the MIMO MAC can be enhanced via successive cancellation. Here, we introduce dirty-paper integer-forcing for the MIMO BC and establish uplink-downlink duality with successive integer-forcing for the MIMO MAC.
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