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A New Energy-Efficient Beamforming Strategy for MISO Interfering Broadcast Channels Based on Large Systems Analysis

机译:基于大型系统分析的MISO干扰广播信道的高效节能波束成形策略

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摘要

In this paper, we propose a new beamforming design to maximize energy efficiency (EE) for multiple input single output interfering broadcast channels (IFBCs). Under this model, the EE problem is nonconvex in general due to the coupled interference and its fractional form, and thus it is difficult to solve the problem. Conventional algorithms which address this problem have adopted an iterative method for each channel realization, which requires high computational complexity. In order to reduce the computational complexity, we parameterize the beamforming vector by scalar parameters related to beam direction and power. Then, by employing asymptotic results of random matrix theory with this parametrization, we identify the optimal parameters to maximize the EE in the large system limit assuming that the number of transmit antennas and users are large with a fixed ratio. In the asymptotic regime, our solutions depend only on the second order channel statistics, which yields significantly reduced computational complexity and system overhead compared to the conventional approaches. Hence, the beamforming vector to maximize the EE performance can be determined with local channel state information and the optimized parameters. Based on the asymptotic results, the proposed scheme can provide insights on the average EE performance, and a simple yet efficient beamforming strategy is introduced for the finite system case. Numerical results confirm that the proposed scheme shows a negligible performance loss compared to the best result achieved by the conventional approaches even with small system dimensions, with much reduced system complexity.
机译:在本文中,我们提出了一种新的波束成形设计,以最大程度地提高多输入单输出干扰广播信道(IFBC)的能效(EE)。在这种模型下,由于耦合干扰及其分数形式,EE问题通常是非凸的,因此很难解决该问题。解决该问题的常规算法为每个通道实现采用了迭代方法,这需要很高的计算复杂度。为了降低计算复杂度,我们通过与波束方向和功率相关的标量参数对波束赋形矢量进行参数化。然后,通过将随机矩阵理论的渐近结果与该参数化结合使用,我们确定了最佳参数,从而在假定固定比例的发射天线和用户数量很大的情况下,在较大的系统限制下使EE最大化。在渐近状态下,我们的解决方案仅取决于二阶通道统计信息,与传统方法相比,该方法可显着降低计算复杂度和系统开销。因此,可以利用本地信道状态信息和优化的参数来确定使EE性能最大化的波束成形矢量。基于渐近结果,提出的方案可以提供关于平均EE性能的见解,并针对有限系统情况引入了一种简单而有效的波束成形策略。数值结果证实,与传统方法所获得的最佳结果相比,即使在系统尺寸较小的情况下,所提出的方案显示的性能损失也可以忽略不计,并且系统复杂度大大降低。

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