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Optimal Power Allocation for the Chance-Constrained Vector Broadcast Channel and Rank-One Channel Approximation

机译:机会约束矢量广播频道的最优功率分配和秩 - 一个通道近似

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We address the linear precoder design problem based on chance constrained quality-of-service (QoS) power minimization in the vector broadcast channel (BC). We divide the problem into a two step optimization that separates the precoder design from the power allocation. For the power allocation, we propose a map that fits into the framework of standard interference functions. Therefore, we can compute the optimal power allocation for given beamformers and detect whether a tuple of beamformers is feasible. This allows us to test conservative and non-conservative approaches for the beamformer design, e.g., a design based on a rank-one channel approximation is used. Numerical results show that the approximation is adequate for the non-conservative calculation approach, i.e., the post-processing power allocation is capable of compensating for the suboptimal beamforming. Thereby, a wider range of rate targets is achieved than with the conservative beamformer designs.
机译:我们基于机会在矢量广播信道(BC)中的机会约束的服务质量(QoS)功率最小化来解决线性预编码设计问题。我们将问题分为两步优化,将预编码器设计与功率分配分开。对于电源分配,我们提出了一个适合标准干扰函数框架的地图。因此,我们可以计算给定波束形成器的最佳功率分配,并检测波束形成器的元组是否可行。这允许我们测试用于波束形成器设计的保守和非保守方法,例如,使用基于秩的设计 - 一个通道近似。数值结果表明,近似对于非保守计算方法是足够的,即,后处理功率分配能够补偿次优波束形成。由此,比保守的波束形成器设计更广泛的速率目标。

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