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Linear Precoder Design for MIMO Interference Channels with Finite-Alphabet Signaling

机译:具有有限字母信号的MIMO干扰信道的线性预编码器设计

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This paper investigates the linear precoder design for K-user interference channels of multiple-input multiple-output (MIMO) transceivers under finite alphabet inputs. We first obtain general explicit expressions of the achievable rate for users in the MIMO interference channel systems. We study optimal transmission strategies in both low and high signal-to-noise ratio (SNR) regions. Given finite alphabet inputs, we show that a simple power allocation design achieves optimal performance at high SNR whereas the well-known interference alignment technique for Gaussian inputs only utilizes a partial interference-free signal space for transmission and leads to a constant rate loss when applied naively to finite-alphabet inputs. Moreover, we establish necessary conditions for the linear precoder design to achieve weighted sum-rate maximization. We also present an efficient iterative algorithm for determining precoding matrices of all the users. Our numerical results demonstrate that the proposed iterative algorithm achieves considerably higher sum-rate under practical QAM inputs than other known methods.
机译:本文研究了有限字母输入下用于多输入多输出(MIMO)收发器的K用户干扰信道的线性预编码器设计。我们首先获得MIMO干扰信道系统中用户可达到的速率的一般显式表达式。我们研究低和高信噪比(SNR)区域中的最佳传输策略。给定有限的字母输入,我们表明简单的功率分配设计可在高SNR时实现最佳性能,而众所周知的高斯输入干扰对齐技术仅利用部分无干扰的信号空间进行传输,并在应用时导致恒定的速率损失天真的到有限字母输入。此外,我们为线性预编码器设计建立了必要条件,以实现加权总和率最大化。我们还提出了一种有效的迭代算法,用于确定所有用户的预编码矩阵。我们的数值结果表明,与其他已知方法相比,所提出的迭代算法在实际QAM输入下可实现更高的求和率。

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