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Chance Constrained Robust Downlink Beamforming in Multicell Networks

机译:多小区网络中机会约束的鲁棒下行链路波束成形

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We introduce a downlink robust optimization approach that minimizes a combination of total transmit power by a multiple antenna base station (BS) within a cell and the resulting aggregate inter-cell interference (ICI) power on the users of the other cells. This optimization is constrained to assure that a set of signal-to-interference-plus-noise ratio (SINR) targets are met at user terminals with certain outage probabilities. The outages are due to the uncertainties that naturally emerge in the estimation of channel covariance matrices between a BS and its intra-cell local users as well as the other users of the other cells. We model these uncertainties using random matrices, analyze their statistical behavior, and formulate a tractable probabilistic approach to the design of optimal robust downlink beamforming vectors. The proposed approach reformulates the original intractable non-convex problem in a semidefinite programming (SDP) form with linear matrix inequality (LMI) constraints. The resulting SDP formulation is convex and numerically tractable under the standard rank relaxation. We compare the proposed chance-constrained approach against two different robust design schemes as well as the worst-case robustness. The simulation results confirm better power efficiency and higher resilience against channel uncertainties of the proposed approach in realistic scenarios.
机译:我们介绍了一种下行链路鲁棒性优化方法,该方法可将一个小区内的多个天线基站(BS)的总发射功率与其他小区的用户所产生的汇总小区间干扰(ICI)功率的总和最小化。限制此优化以确保在具有某些中断概率的用户终端上满足一组信号干扰加噪声比(SINR)目标。中断是由于在BS与它的小区内本地用户以及其他小区的其他用户之间的信道协方差矩阵的估计中自然出现的不确定性。我们使用随机矩阵对这些不确定性进行建模,分析其统计行为,并制定一种可预测的概率方法来设计最佳鲁棒下行链路波束成形向量。所提出的方法以具有线性矩阵不等式(LMI)约束的半定规划(SDP)形式重新构造了原始的棘手非凸问题。在标准等级松弛下,所得的SDP公式是凸的,并且在数值上易于处理。我们将提出的机会受限方法与两种不同的鲁棒性设计方案以及最坏情况的鲁棒性进行了比较。仿真结果证实,在实际情况下,该方法具有更好的功率效率和更高的抵御信道不确定性的能力。

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