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Distributed interference alignment and power allocation with QoS requirements

机译:符合QoS要求的分布式干扰调整和功率分配

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We study interference alignment (IA) with quality of service (QoS) requirements in a K-user multiple input multiple output interference channel (K-user MIMO IFC). Specifically, we establish design formulations: i) that maximize the minimum signal-to-interference-noise ratio (SINR) at receivers, and that ii) minimize the sum mean squared error (Sum-MSE). The uplink-downlink (UL-DL) SINR duality is firstly established for the K-user MIMO IFC. With this result, we develop iterative IA algorithms which design the transmit/receive filters and optimizes power allocation among users jointly. The convergence of the proposed algorithms is proved based on the established UL-DL SINR duality. Numerical results show that, compared with the classic distributed IA algorithm and Max-SINR algorithm, the proposed algorithms achieve significant gain under mild signal-to-noise ratios (SNRs), and exhibits similar performance at high SNRs.
机译:我们在K-User多输入多输出干扰通道(K-User MIMO IFC)中,研究干扰对齐(IA)的服务质量(QoS)要求。具体而言,我们建立了设计配方:i),最大化接收器的最小信号对干扰噪声比(SINR),并且II)最小化总和平均误差(SUM-MSE)。首先为k用户MIMO IFC建立上行链路(UL-DL)SINR二元性。通过此结果,开发迭代IA算法,该算法设计发射/接收过滤器,并共同优化用户之间的电力分配。基于已建立的UL-DL SINR二元性证明了所提出的算法的收敛性。数值结果表明,与经典分布式IA算法和MAX-SINR算法相比,所提出的算法在轻度信噪比(SNRS)下实现了显着的增益,并且在高SNR时表现出类似的性能。

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