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Optimized transceivers for interference alignment in MIMO interference channels

机译:用于MIMO干扰通道中干扰对齐的优化收发器

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This paper is concerned with the optimal transceiver design in flat-fading multiple-input multiple-output (MIMO) interference channels. Interference alignment (IA) is recently known as an emerging technique to obtain the maximum total degree of freedom. Finding the transceiver matrices for perfect IA is mathematically challenging since the interference alignment problems are highly nonlinear and nonconvex. Interference leakage minimization and signal to noise plus interference ratio (SINR) maximization methods were developed to suppress the interference from the undesired users. However, most of previous works commonly assume that the equal power is allocated to each user and each stream. In this paper, we develop an iterative optimization algorithm to optimize power allocation to each stream. The simulation results indicate that the proposed algorithm offers a higher sum-rate than the interference leakage minimization method.
机译:本文涉及扁平衰落多输入多输出(MIMO)干扰通道的最佳收发器设计。 干扰对准(IA)最近被称为新出现的技术,以获得最大自由度。 找到完美IA的收发器矩阵是数学上具有挑战性,因为干扰对准问题是高度非线性和非凸起的。 开发干扰泄漏最小化和信号与噪声加干扰比(SINR)最大化方法以抑制来自不期望的用户的干扰。 然而,以前的大多数作品通常假设将相同的电源分配给每个用户和每个流。 在本文中,我们开发了一种迭代优化算法,以优化每个流的功率分配。 模拟结果表明,所提出的算法提供比干扰泄漏最小化方法更高的总和率。

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