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Coordinated Beamforming for Multiuser MISO Interference Channel Under Rate Outage Constraints

机译:速率中断约束下多用户MISO干扰信道的协调波束成形

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This paper studies the coordinated beamforming design problem for the multiple-input single-output (MISO) interference channel, assuming only channel distribution information (CDI) known to the transmitters. Under a given requirement on the rate outage probability for receivers, we aim to maximize the system utility (e.g., the weighted sum rate, weighted geometric mean rate, and the weighed harmonic mean rate) subject to the rate outage constraints and individual power constraints. The outage constraints, however, lead to a complicated, nonconvex structure for the considered beamforming design problem and render the optimization problem difficult to handle. Although this nonconvex optimization problem can be solved in an exhaustive search manner, this brute-force approach is only feasible when the number of transmitter-receiver pairs is small. For a system with a large number of transmitter-receiver pairs, computationally efficient alternatives are necessary. Hence, the focus of this paper is the design of such efficient approximation methods. In particular, by employing semidefinite relaxation (SDR) and first-order approximation techniques, we propose an efficient successive convex approximation (SCA) algorithm that provides high-quality approximate beamforming solutions via solving a sequence of convex approximation problems. The solution thus obtained is further shown to be a stationary point for the SDR of the original outage constrained beamforming design problem. Furthermore, we propose a distributed SCA algorithm where each transmitter optimizes its own beamformer using local CDI and information obtained from limited message exchange with the other transmitters. Our simulation results demonstrate that the proposed SCA algorithm and its distributed counterpart indeed converge, and promising performance can be achieved for all the considered system utilities.
机译:本文仅假设发射机已知的信道分布信息(CDI),研究多输入单输出(MISO)干扰信道的协调波束成形设计问题。在给定的接收机速率中断概率的给定要求下,我们的目标是在受限于速率中断约束和单个功率约束的情况下,最大化系统效用(例如加权总和速率,加权几何平均速率和加权谐波平均速率)。然而,中断的约束导致用于所考虑的波束成形设计问题的复杂的非凸结构,并使优化问题难以处理。尽管可以以详尽的搜索方式解决此非凸优化问题,但这种强力方法仅在收发器对的数量较少时才可行。对于具有大量收发器对的系统,计算上有效的替代方案是必需的。因此,本文的重点是设计这种有效的近似方法。特别是,通过采用半定松弛(SDR)和一阶逼近技术,我们提出了一种有效的连续凸逼近(SCA)算法,该算法通过解决一系列凸逼近问题来提供高质量的近似波束成形解决方案。如此获得的解决方案进一步显示为原始中断约束波束成形设计问题的SDR的固定点。此外,我们提出了一种分布式SCA算法,其中每个发送器使用本地CDI和从与其他发送器进行的有限消息交换中获得的信息来优化其自身的波束形成器。我们的仿真结果表明,所提出的SCA算法及其分布式对应算法确实可以收敛,并且对于所有考虑的系统实用程序都可以实现有希望的性能。

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